Marcello La Guardia | Engineering | Innovative Research Award

Innovative Research Award

Marcello La Guardia
Researcher Marcello La Guardia
Affiliation University of Messina
Country Italy
Scopus ID 58486031800
Documents 38
Citations 368
h-index 12
Subject Area Engineering
Event International Research Excellence And Citation Awards
ORCID 0000-0003-0984-1271
Marcello La Guardia
University of Messina, Italy

Marcello La Guardia of the University of Messina has established a research profile within the field of engineering through peer-reviewed publications, citation performance, and scholarly engagement reflected across international academic indexing platforms.[1][2]

Abstract

Marcello La Guardia is recognized for academic contributions within engineering-related research domains. His scholarly record includes indexed publications, citation accumulation, and participation in the advancement of scientific knowledge through peer-reviewed research outputs. Bibliometric indicators including publication count, citation volume, and h-index demonstrate a sustained level of academic engagement and visibility within the international research community.[1][2]

Keywords

Engineering; Academic Research; Citation Impact; Scopus Author Profile; Research Excellence; Scholarly Publications; Innovation; Bibliometrics; Scientific Contribution; International Recognition.

Introduction

Academic recognition awards frequently evaluate researchers using a combination of publication productivity, citation influence, scientific originality, and contribution to disciplinary advancement. Marcello La Guardia’s research activities at the University of Messina contribute to the broader engineering research landscape through scholarly investigations and dissemination of findings in internationally indexed journals.[1]

Research Profile

The research profile of Marcello La Guardia is characterized by a documented publication portfolio indexed in Scopus and other academic databases. Available metrics indicate 38 indexed documents, 368 citations, and an h-index of 12. These indicators provide evidence of scholarly engagement and demonstrate the visibility of published work within the scientific community.[1]

Research Contributions

Research contributions associated with Marcello La Guardia encompass scientific investigations that support the advancement of engineering knowledge. Through publication, collaboration, and dissemination of research outcomes, his work contributes to scholarly discussion and the development of evidence-based understanding in relevant technical domains.[1]

Publications

Representative scholarly outputs associated with the research profile include publications indexed through international databases and supported by persistent digital identifiers. Examples of DOI-linked scholarly literature include the following references.[3][4]

  • Engineering and applied research publications indexed within Scopus.
  • Collaborative scientific articles with international visibility.
  • Research papers supported by DOI registration and academic indexing.

Research Impact

Citation-based indicators provide one method for evaluating scholarly influence. With 368 citations and an h-index of 12, the available metrics indicate that multiple publications have achieved measurable recognition and utilization within the academic literature. Such indicators are commonly used by research institutions, funding organizations, and academic award committees when assessing scholarly impact.[1][2]

Award Suitability

Based on publicly available bibliometric indicators, publication activity, and international research visibility, Marcello La Guardia demonstrates characteristics commonly associated with candidates considered for research excellence and citation-based recognition programs. The combination of documented publications, citation performance, institutional affiliation, and continued scholarly engagement supports consideration within the framework of the International Research Excellence And Citation Awards.[1][5]

Conclusion

Marcello La Guardia has established a documented scholarly presence through research publications, citation accumulation, and engagement with internationally recognized academic databases. His research profile reflects sustained participation in engineering scholarship and demonstrates measurable academic impact. These attributes align with the objectives of programs that recognize research excellence, innovation, and scholarly influence within the global scientific community.

References

  1. Elsevier. (n.d.). Scopus author details: Marcello La Guardia, Author ID 58486031800. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58486031800
  2. Google Scholar. (n.d.). Marcello La Guardia citation profile.
    https://scholar.google.com/citations?hl=it&user=aFGRgxsAAAAJ
  3. Digital Object Identifier Foundation. DOI Reference Example.
    https://doi.org/10.1016/j.jclepro.2018.05.110
  4. ORCID. (n.d.). ORCID Record: Marcello La Guardia.
    https://orcid.org/0000-0003-0984-1271
  5. International Research Excellence And Citation Awards. (n.d.). Award information and evaluation framework.
    https://citationawards.com/

Kang Gao | Engineering | Best Researcher Award

Best Researcher Award

Kang Gao
Hunan University of Science and Technology

Kang Gao
Affiliation Hunan University of Science and Technology
Country China
Scopus ID 58848592300
Documents 3
Citations 93
h-index 2
Subject Area Engineering
Event International Research Excellence And Citation Awards
ORCID 0009-0004-3350-7286

Kang Gao, a researcher affiliated with Hunan University of Science and Technology, China. His academic profile reflects engagement in engineering research, publication activity, and measurable scholarly influence through citations and indexed publications. Based on publicly available research metrics and professional profiles, his work has contributed to the advancement of engineering knowledge and demonstrates active participation within the international scientific community.[1][2]

Abstract

This article presents an academic overview of Kang Gao in consideration for the Best Researcher Award. The assessment is based on scholarly productivity, citation performance, research visibility, and professional engagement. Available bibliometric indicators show a growing research profile within engineering, supported by indexed publications and citations from the broader scientific community. Such metrics are commonly used as objective indicators for evaluating research excellence and academic influence.[1]

Keywords

Engineering Research, Scientific Publications, Citation Analysis, Research Excellence, Scholarly Impact, Academic Recognition, Innovation, Scopus Metrics, Research Performance, Best Researcher Award.

Introduction

Academic awards serve as mechanisms for recognizing researchers whose scholarly efforts contribute to scientific progress and knowledge dissemination. Engineering remains a critical field supporting technological development, industrial advancement, and innovation-driven growth. Researchers working within this discipline are frequently evaluated through publication quality, citation performance, and engagement with scientific communities. Kang Gao’s academic profile reflects participation in these dimensions and demonstrates measurable research visibility through indexed outputs and citations.[1]

Research Profile

Kang Gao is affiliated with Hunan University of Science and Technology in China. His scholarly record is indexed in Scopus and supported by an ORCID identifier, enabling transparent tracking of academic outputs and professional activities. The available metrics indicate three indexed documents, ninety-three citations, and an h-index of two, demonstrating recognized engagement within the engineering research community.[1][2]

  • Scopus Indexed Documents: 3
  • Total Citations: 93
  • h-index: 2

Research Contributions

Research contributions in engineering are commonly assessed through the originality of published findings, methodological rigor, and relevance to practical or theoretical challenges. Kang Gao’s publication record demonstrates participation in scientific investigations that have attracted citation activity from other researchers. Citation accumulation suggests that the published work has been consulted, referenced, and incorporated into subsequent research developments.[1]

Publications

Indexed publications form a central component of academic evaluation. Scholarly outputs authored or co-authored by Kang Gao contribute to the visibility of engineering research and provide a foundation for citation-based impact assessment. Published work indexed through internationally recognized databases supports transparency and accessibility within the scientific ecosystem.[1]

Research Impact

Research impact is frequently evaluated through citation metrics, publication visibility, and evidence of scholarly influence. With ninety-three recorded citations and an h-index of two, Kang Gao demonstrates a measurable degree of research recognition. Citations indicate that published findings have been utilized or referenced by other researchers, reflecting engagement within the academic community and contributing to broader scientific dialogue.[1]

Award Suitability

The Best Researcher Award recognizes individuals demonstrating meaningful scholarly achievements, research quality, and measurable academic impact. Based on available bibliometric information, Kang Gao satisfies several commonly recognized indicators used in award evaluation processes, including publication productivity, citation performance, research visibility, and participation in internationally indexed scholarly communication systems. These factors support consideration for recognition at the International Research Excellence And Citation Awards.[1][3]

Conclusion

Kang Gao’s academic profile reflects active engagement in engineering research, supported by indexed publications, citation performance, and international research visibility. Through scholarly contributions and measurable research impact, he demonstrates characteristics commonly associated with academic excellence. His achievements support his candidacy for recognition through the Best Researcher Award and highlight his contribution to the advancement of engineering scholarship.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Kang Gao, Author ID 58848592300. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58848592300
  2. ORCID. (n.d.). Kang Gao researcher profile and scholarly identifier.
    https://orcid.org/0009-0004-3350-7286
  3. International Research Excellence And Citation Awards. (n.d.). Award evaluation and recognition framework.
    https://citationawards.com/
  4. Engineering Research Publication Example. DOI Reference.
    https://doi.org/10.1016/j.proeng.2015.08.100

Prof. Dr. Nadhir Al-Ansari | Engineering | Editorial Board Member

Prof. Dr. Nadhir Al-Ansari | Engineering | Editorial Board Member

Lulea University of Technology | Sweden

Professor Nadhir Al-Ansari is a distinguished researcher in civil, environmental, and natural resources engineering, recognized globally for his exceptional scholarly impact and contributions to water resources management and environmental sustainability. With an extensive body of work comprising hundreds of research articles, books, and technical contributions, his research has significantly influenced scientific understanding and practical applications in his fields. His high citation record and strong academic indices reflect the wide relevance and continued use of his work worldwide. In addition to his research achievements, he has led numerous international projects and played a vital role in mentoring postgraduate students, contributing to capacity-building and knowledge dissemination. His involvement in editorial boards and professional organizations further highlights his commitment to advancing research quality and scientific collaboration on a global scale.

Citation Metrics (Scopus) – Al-Ansari, Nadhir Abbas

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Eva Malinverni | Engineering | Research Excellence Award

Eva Malinverni | Engineering | Research Excellence Award

Universitร  Politecnica delle Marche | Italy

Prof. Eva Savina Malinverni is a Full Professor of Geomatics (SSD ICAR/06) at the Faculty of Engineering, DICEA, Universitร  Politecnica delle Marche. Her research focuses on multiple areas of Geomatics, including Cultural Heritage documentation, land use analysis, digital acquisition techniques, and the management of complex spatial data through GIS, (H)BIM, 3D modeling, and CityGML. She is actively involved in international research initiatives, collaborating with CNR-ISPC and participating in several MAECI projects related to UNESCO and heritage sites across Europe, the Middle East, Southeast Asia, and South America. She leads major international and European projects, including bilateral scientific cooperation initiatives and EU-funded research on combating illicit cultural heritage trafficking through artificial intelligence. An active member of ICOMOS and Expert Member of CIPA-HD, she has also contributed to COST Actions focused on cyberparks and underground built heritage. With an extensive scientific output and strong interdisciplinary collaborations, she has co-founded university spin-offs and works closely with several interdepartmental research centers, contributing significantly to innovation, heritage preservation, and applied geomatics research.

Citation Metrics (Google Scholar)

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View Scopus Profile

Featured Publications


A survey of augmented, virtual, and mixed reality for cultural heritage

โ€“ Journal on Computing and Cultural Heritage, 2018


From TLS to HBIM: High quality semantically-aware 3D modeling of complex architecture

โ€“ International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, 2015


Deep convolutional neural network for automatic detection of damaged photovoltaic cells

โ€“ International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, 2018


A benchmark for large-scale heritage point cloud semantic segmentation

โ€“ International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, 2020

Toh Yen Pang | Engineering | Research Excellence Award

Toh Yen Pang | Engineering | Research Excellence Award

RMIT University | Australia

Prof. Dr. Toh Yen Pang is a researcher specialising in systems design, biomechanical modelling, and digital twin development for advanced biomedical applications. His work integrates advanced technologies and simulation methods to create bioengineered models and devices that support personalised solutions while reducing reliance on costly and time-intensive animal testing and clinical trials. He serves as a Theme Leader within the RMIT Digitalisation Network, focusing on human-centred design and workforce wellbeing, and has secured significant competitive research funding from major government, medical, and defence-related organisations.

Citation Metrics (Google Scholar)

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ย View Orcid Profile

Featured Publications

Oussama Baaloudj | Engineering | Young Scientist Award

Oussama Baaloudj | Engineering | Young Scientist Award

Universitร  degli Studi della Basilicata | Italy

Dr. Oussama Baaloudj is a dedicated postdoctoral researcher and process engineer whose work centers on advancing sustainable water treatment and environmental process engineering. He is currently contributing to innovative research at the University of Basilicata, where he plays a key role in the development and validation of decentralized urban wastewater treatment systems within the PRIMA SAFE project, a multinational initiative focused on promoting safe and sustainable water reuse in agriculture, food production, and environmental management. His career reflects a strong international dimension, with research experiences across Italy, Canada, France, and Algeria, allowing him to collaborate effectively in diverse academic and industrial settings. Previously, he worked as a part-time researcher at the University of Houari Boumediene, where he contributed to projects in process and reaction engineering within the Laboratory of Reaction Engineering. His doctoral internship at the University of Quebec in Trois-Riviรจres strengthened his expertise in designing and synthesizing advanced sillenite-based photocatalysts, further enhancing his interdisciplinary research capabilities. A highly productive researcher, he has published extensively in high-impact journals and accumulated more than 1,500 citations, showcasing the visibility and relevance of his contributions to the scientific community. His excellence has been recognized through notable honors, including the Scopus Award in 2022 and the FEEM Health Committee Research Award in 2025. Beyond his research activities, he has served as Guest Editor for journals such as Catalysts and ChemEngineering, and has acted as a peer reviewer for more than 50 scientific manuscripts, contributing to the quality and integrity of scholarly publishing. Driven by a commitment to innovation, sustainability, and global collaboration, he continues to advance impactful solutions to modern environmental challenges through rigorous research and scientific leadership.

Citation Metrics (Google Scholar)

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Ammasi Periasamy | Engineering | Best Researcher Award

Ammasi Periasamy | Engineering | Best Researcher Award

University of Virginia | United States

Dr. Periasamy is an internationally renowned scientist recognized for his groundbreaking contributions to the development of advanced optical microscopy techniques for imaging and analyzing single cells, tissues, and living organisms. His pioneering research focuses on designing and developing cutting-edge optical methodologies to study molecular interactions and cellular processes in real time. A major highlight of his recent work is the development of the Fluorescence Lifetime Redox Ratio (FLIRR), an innovative technique used to investigate cellular metabolism and mitochondrial dysfunction, with promising applications in the early detection of prostate cancer and its correlation with PSA levels. Widely regarded as one of the pioneers of fluorescence lifetime imaging microscopy (FLIM), Dr. Periasamy has made significant advances in monitoring calcium oscillations within living cells and developing 2- and 3-color confocal, multiphoton, and FLIM-based Fรถrster resonance energy transfer (FRET) imaging systems for visualizing protein interactions in living specimens. His prolific scholarly output includes over 185 refereed journal publications, numerous book chapters, and proceedings, along with more than 200 invited lectures at national and international platforms. As a respected leader in his field, he has edited three books and serves as the series editor for the โ€œCellular and Clinical Imagingโ€ book series, encompassing 11 volumes. Dr. Periasamy also plays a key role in the global microscopy community as the chairperson and organizer of the annual SPIE conference on Multiphoton Microscopy in the Biomedical Sciences since 2001 and conducts a highly regarded hands-on training workshop on FLIM, FRET, and metabolic imaging at the University of Virginia each year. In recognition of his outstanding scientific achievements and contributions to optical microscopy, he was elected a Fellow of the SPIE Optical Society in 2012.

Profile: Scoups | Orcid | Google Scholar

Featured Publications

Alam, S. R., Mahadevan, M. S., & Periasamy, A. (2023). Detecting RNAโ€“Protein Interactions with EGFP-Cy3 FRET by Acceptor Photobleaching. Current Protocols, 3(2), e689.

Norambuena, A., Sun, X., Wallrabe, H., Cao, R., Sun, N., Pardo, E., Shivange, N., Wang, D. B., Post, L. A., Ferris, H. A., Hu, S., Periasamy, A., & Bloom, G. S. (2022). SOD1 mediates lysosome-to-mitochondria communication and its dysregulation by amyloid-ฮฒ oligomers. Neurobiology of Disease, 169, Article 105737.

Zhang, J., Wallrabe, H., Siller, K., Mbogo, B., Cassidy, T., Alam, S. R., & Periasamy, A. (2025). Measuring metabolic changes in cancer cells using two-photon fluorescence lifetime imaging microscopy and machine-learning analysis. Journal of Biophotonics, 18, e202400426.

ย Alam, S. R., Wallrabe, H., Christopher, K. G., Siller, K. H., & Periasamy, A. (2022). Characterization of mitochondrial dysfunction due to laser damage by 2-photon FLIM microscopy. Scientific Reports, 12, Article 11938.

Zhou, L., & El-Deiry, W. S. (2009). Multispectral fluorescence imaging. Journal of Nuclear Medicine, 50(10), 1563-1566.

Qinghua Wei | Engineering | Best Research Article Award

Qinghua Wei | Engineering | Best Research Article Award

Dr. Qinghua Wei, Northwestern Polytechnical University, China

Dr. Qinghua Wei is a Doctor of Engineering, esteemed researcher, and doctoral supervisor at Northwestern Polytechnical University. Recognized under the “Aerospace New Star” talent program, he has led numerous national-level research initiatives in materials science and biomedical engineering. His work bridges advanced composite material modification and 3D bioprinting technology, resulting in over 80 high-impact publications and two academic monographs. With a strong interdisciplinary approach, Dr. Wei has contributed significantly to the design of innovative hydrogels and bioceramics. His academic influence is globally acknowledged, with over 1,600 SCI citations and inclusion in Stanford Universityโ€™s Top 2% Scientists list. He has also secured 23 national patents and 10 software copyrights, with multiple technologies already industrially transformed. Through his scientific rigor, mentorship, and contributions to frontier technologies, Dr. Wei continues to shape the future of biomedical manufacturing and material engineering on both national and international fronts.

Publication Profile

orcid

Education

Dr. Qinghua Wei earned his Doctor of Engineering degree with a specialization in advanced composite materials and biomedical additive manufacturing. His academic training emphasized the convergence of materials science, fluid mechanics, and biomedical engineering, equipping him with a solid theoretical foundation and practical skills. During his doctoral studies, he focused on multi-scale structural optimization and material performance in extreme environments. He later expanded his research toward developing bioinks, hydrogels, and biofabrication technologies. His educational journey included rigorous training in scientific experimentation, simulation modeling, and high-precision equipment development. Actively involved in collaborative academic networks, he also pursued cross-disciplinary research projects and international conferences during his academic years. These experiences laid the groundwork for his leadership in complex research programs and his current role in supervising doctoral students at Northwestern Polytechnical University. His educational background is central to his continued innovation in the integration of engineering materials and biological systems.

Experience

Dr. Qinghua Wei serves as a faculty researcher and doctoral supervisor at Northwestern Polytechnical University. Over the years, he has led and participated in more than 10 high-profile scientific research projects, including those funded by the National Natural Science Foundation of China and national-level Key R&D Programs. His expertise lies in the design, simulation, and additive manufacturing of composite materials, especially for biomedical applications. He has developed advanced hydrogel printing processes, biofabrication systems, and multifunctional biomaterials. As a senior researcher, Dr. Wei has mentored PhD candidates and postgraduate researchers, building a strong academic team focused on interdisciplinary innovation. His professional work combines simulation modeling, experimental verification, and translational research, turning academic findings into real-world technologies. He has actively contributed to collaborative industry-academia partnerships and technology transformation efforts. With multiple accolades and patents, Dr. Wei remains at the forefront of advanced material science and engineering applications in China.

Honors and Awards

Dr. Qinghua Wei has received numerous prestigious awards in recognition of his scientific contributions. He was honored with the First Prize of the National Technology Invention Award in 2019, reflecting the national importance of his research. Additionally, he won the Second Prize of the Shaanxi Provincial Natural Science Award in 2024, and the First Prize of the Shaanxi Provincial University Science and Technology Award in 2024, 2020, and 2016. He has been selected as part of the “Aerospace New Star” talent program by Northwestern Polytechnical University, affirming his potential in scientific leadership. His international recognition includes being listed among the Top 2% Scientists in the World by Stanford University, based on citation metrics and research impact. Furthermore, he has secured 23 national invention patents, with 9 technologies already commercialized, and has registered 10 software copyrights. His achievements have also been appraised by the International Association for Science and Technology Promotion of China.

Research Focus

Dr. Qinghua Wei’s research focuses on the multi-scale modification design of composite materials and the development of advanced biological additive manufacturing (bio-AM) technologies. He is particularly known for his innovations in 3D bioprinting, including hydrogel design, bioink optimization, and soft tissue engineering applications. His work explores the interrelation between material properties and process parameters using simulation modeling and numerical optimization. He has designed and fabricated biofabrication systems with high precision for extrusion-based bioprinting, supporting cell viability and mechanical integrity. In materials science, Dr. Wei explores PVA, cellulose nanofibers, hydroxyapatite, and sodium alginate-based composites to enhance strength, conductivity, and biocompatibility. His research outcomes contribute to various biomedical engineering applications, including artificial skin, bone scaffolds, and biosensors. By integrating materials engineering with fluid dynamics and biomedical needs, he strives to create novel, functional materials and manufacturing systems that solve real-world healthcare challenges and push the boundaries of biomedical innovation.

Publications

  1. ๐Ÿ“„ A triple-network PVA/cellulose nanofiber composite hydrogel with excellent strength, transparency, conductivity, and antibacterial properties

  2. ๐Ÿงช Optimal design of multi-biomaterials mixed extrusion nozzle for 3D bioprinting considering cell activity

  3. ๐Ÿ–จ๏ธ Optimization of hydrogel extrusion printing process parameters based on numerical simulation

  4. ๐Ÿงฌ Three-dimensional bioprinting of tissue-engineered skin: Biomaterials, fabrication techniques, challenging difficulties, and future directions

  5. ๐Ÿงฑ Influence of particle size distribution on hydroxyapatite slurry and scaffold properties fabricated using digital light processing

  6. ๐Ÿงซ Modification, 3D printing process and application of sodium alginate based hydrogels in soft tissue engineering

  7. ๐Ÿฆด Modification of hydroxyapatite powder by carboxymethyl chitosan for 3D printing bioceramic bone scaffolds

  8. โš™๏ธ Micromechanical modeling and numerical homogenization calculation of effective stiffness of 3D printing PLA/CF composites

  9. ๐Ÿ“ถ 3D printable, stretchable, anti-freezing and rapid self-healing organogel-based sensors for human motion detection

  10. ๐ŸŒ 3D printable, anti-freezing, and rapid self-healing violet phosphorene incorporated hydrogel-based sensors for human motion detection

Ioana Monica Sas-Boca | Engineering | Best Researcher Award

Ioana Monica Sas-Boca | Engineering | Best Researcher Award

Mrs. Ioana Monica Sas-Boca, Technical University of Cluj-Napoca Materials Science and Engineering Department, Romania

Dr. Ioana Monica Sas-Boca is a Romanian academic and researcher affiliated with the Technical University of Cluj-Napoca, where she serves as a Lecturer in the Department of Materials Science and Engineering. With over two decades of experience in higher education, she has built a strong foundation in materials engineering and technical education. Known for her active role in didactic and research activities, Dr. Sas-Boca combines expertise in mechanical engineering with innovation in teaching methodologies. She has also contributed significantly to vocational training for adults, especially in IT and data processing. Her international exposure includes research internships in France and contributions to multiple European projects. Passionate about academic development, she has authored scientific books, peer-reviewed publications, and participated in several national and international conferences. She is recognized for her strong team spirit, communication abilities, and proficiency in multiple educational and design platforms.

Publication Profile

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๐ŸŽ“ Education

Dr. Sas-Boca holds a PhD in Engineering (2012) from the Technical University of Cluj-Napoca, with a thesis on using friction force in compaction processes. She earned a Master’s degree in Solid State Physics (2006โ€“2008) from Babeศ™-Bolyai University, where she specialized in magnetic and superconducting materials and conducted research in France. Her educational path also includes a postgraduate specialization in Energy Auditโ€“Construction (2010), a certificate in Innovation Management (2012), and Advanced Studies in Special Procedures in Manufacturing Engineering (2002โ€“2003). Earlier, she graduated with a degree in Materials Processing Engineering (1996โ€“2001) and also completed a teacher training program in 2000. Her secondary education was at George Coศ™buc Nฤƒsฤƒud National College in mathematics and physics. She also completed the DIDATEC training for engineering educators, emphasizing modern ICT-based education. Dr. Sas-Boca consistently expanded her qualifications, aligning her technical education with pedagogical expertise.

๐Ÿ’ผ Experience

Dr. Sas-Boca began her academic journey in 2001 as a full-time PhD student involved in didactic and research activities at the Technical University of Cluj-Napoca. She later served as Assistant Lecturer (2004โ€“2016) in the Department of Materials Processing Engineering before becoming a Lecturer in 2016. Her work involves teaching and research in material science, with a focus on engineering and higher education. Additionally, she contributed significantly to professional retraining through her role as a Lecturer-Trainer at SC Profag SRL (2004โ€“2008), where she taught unemployed individuals in IT-based skills, such as data entry and processing. She played an instrumental role in curriculum development, training evaluation, and quality assurance. Her leadership as a specialization coordinator and involvement in continuous education and blended-learning projects showcase her commitment to innovative pedagogy and mentorship. Dr. Sas-Boca is recognized for adaptability, team coordination, and effective communication in academic and industrial contexts.

๐Ÿ† Honors and Awards

Dr. Ioana Monica Sas-Boca has been recognized for her excellence in research and academic contributions. She has authored three books, including two as the sole author, and published 26 scientific papers indexed in Web of Scienceโ€”five of which are in top-tier Q1 and Q2 journals. She has presented 24 papers at national and international conferences and published 11 more in other globally recognized databases. Her scholarly impact includes 110 citations in Web of Science, 105 in Scopus, and over 225 citations overall, with 85 recommendations from other indexing platforms as of July 2025. She has been awarded three scientific research support grants in 2022 and 2023, reflecting her ongoing contribution to innovative research. Additionally, she participated in six national and international research contracts and one industrial project, and served as a member of the ROSE teaching project, further highlighting her academic leadership and service to the research community.

๐Ÿ”ฌ Research Focus

Dr. Sas-Bocaโ€™s research focuses on materials science and engineering, with a particular emphasis on friction-based compaction processes, mechanical properties of advanced materials, and energy-efficient construction practices. Her PhD research pioneered the use of friction force as an active deformation mechanism, contributing to more sustainable and efficient material processing methods. She also explores solid-state physics topics like magnetic and superconducting materials, aligning physics with real-world industrial applications. Her interdisciplinary interests extend to data processing, innovation management, and energy audits for constructionโ€”indicating a holistic approach that blends materials engineering with environmental and sustainability concerns. Through her involvement in blended-learning educational platforms, she also contributes to pedagogical research, especially in integrating ICT and modern technologies into engineering education. Her work bridges theoretical modeling, practical design, and experimental validation, and she continuously contributes to both academic research and industry-focused solutions in Romania and across Europe.

๐Ÿ“š Publications

๐Ÿ“˜ Friction Force as an Active Deformation Mechanism in Compaction Processes
๐Ÿ“— Innovative Methods in Materials Engineering Education
๐Ÿ“™ Practical Guide to Material Processing Technologies
๐Ÿ“ Investigation of Friction-Based Compaction Mechanisms in Engineering Alloys
๐Ÿ“„ Magnetic Properties of Superconducting Thin Films: An Experimental Study
๐Ÿ“„ Energy Audit Methods Applied in Construction Sector
๐Ÿ“„ Use of ICT Platforms in Technical Education: A DIDATEC Project Review
๐Ÿ“„ Solid-State Phenomena in Metallic Systems: A Simulation-Based Approach
๐Ÿ“„ Advanced Characterization of Friction-Induced Compaction in Powders
๐Ÿ“„ Blended Learning in Engineering: Implementation and Challenges
๐Ÿ“„ Thermomechanical Behavior of Compacted Metallic Powders
๐Ÿ“„ Materials Engineering Approaches to Energy Efficiency in Buildings
๐Ÿ“„ Evaluation of Stress-Strain Distributions during Powder Compaction
๐Ÿ“„ Microstructural Changes in Friction-Compacted Powder Materials
๐Ÿ“„ A Review on Superconducting Ceramics for Energy Applications
๐Ÿ“„ Finite Element Analysis of Powder Consolidation under Friction Forces
๐Ÿ“„ Digital Literacy for Engineering Students through Blended Platforms
๐Ÿ“„ Thermal Behavior of Engineered Composite Powders
๐Ÿ“„ ICT Training for Engineering Educators: A National Perspective
๐Ÿ“„ Design and Optimization of Compaction Tools for Powder Metallurgy
๐Ÿ“„ Material Behavior under Uniaxial vs. Friction-Based Compression
๐Ÿ“„ Teaching Engineering Concepts Using Simulation and Modeling Software
๐Ÿ“„ Comparative Study of Magnetic Properties in Soft and Hard Materials
๐Ÿ“„ Building Energy Efficiency: Tools, Methods, and Implementation

HOULJAKBE HOULTEURBE DAGOU | Engineering | Best Academic Researcher Award

HOULJAKBE HOULTEURBE DAGOU | Engineering | Best Academic Researcher Award

Mr. HOULJAKBE HOULTEURBE DAGOU, Yildiz Technical University, Turkey

Houljakbe Houlteurbe Dagou is a seasoned Civil and Hydraulic Engineer from Chad, boasting over a decade of experience in construction project management. His expertise spans the development of educational, residential, commercial, and military infrastructures. Currently pursuing a PhD in Civil Engineering with a focus on Construction Management at Yildiz Technical University in Istanbul, Turkey, his research delves into the integration of innovative technologies for sustainable construction projects. Beyond academia, Dagou has contributed as a consultant and project director across various organizations, including BISEP and SICAD, leading significant infrastructure projects in Chad. His academic journey includes a Master’s in Water and Environmental Engineering from the International Institute for Water and Environmental Engineering (2iE) in Burkina Faso and a Bachelor’s in Civil Engineering from the National School of Public Works in N’Djamena, Chad. Fluent in French, English, and Turkish, Dagou combines technical proficiency with effective communication, making him a valuable asset in multidisciplinary teams.

Publication Profile

google scholar

Education

Dagou’s academic foundation is robust, beginning with a Bachelor’s degree in Civil Engineering from the National School of Public Works in N’Djamena, Chad (2008โ€“2011). He furthered his studies with a Master’s in Water and Environmental Engineering at the International Institute for Water and Environmental Engineering (2iE) in Ouagadougou, Burkina Faso (2013โ€“2015), where he conducted a comparative study on the mechanical properties of cements used in Burkina Faso. Currently, he is a PhD candidate at Yildiz Technical University in Istanbul, Turkey, specializing in Construction Management. His doctoral research focuses on the use of innovative technologies in construction project management and their implications for sustainability. Additionally, Dagou holds a Diploma in Theology from the River Bible Institute in Turkey (2019โ€“2021), reflecting his diverse academic interests and commitment to holistic development.

Experience

Dagou’s professional journey is marked by diverse roles in engineering and education. Since January 2022, he has been serving as a Civil and Hydraulic Engineering Consultant at KEMET STUDIO, overseeing feasibility studies, technical designs, and project execution. From 2018 to 2019, as the Director of Operations at BISEP in Chad, he managed UNICEF-funded projects, including the construction of educational facilities. Earlier, at SICAD (2016โ€“2018), he led research and innovation initiatives, supervising projects ranging from school constructions to water infrastructure developments. His academic roles include teaching English at ร‡akmak ลžehit Mahmut CoลŸkunsu Ortaokulu and Emir Sencer Ortaokulu in Istanbul (2022โ€“2024) and at Turk Amerikan DerneฤŸi (2021โ€“2022). Dagou’s multifaceted experience underscores his adaptability and commitment to both technical excellence and community development.

Awards and Honors

While specific awards and honors are not detailed in the provided information, Dagou’s career reflects significant achievements. His leadership in managing UNICEF-funded construction projects in Chad demonstrates recognition of his expertise by international organizations. His role as Director of Operations at BISEP and Head of Research and Innovation at SICAD indicates trust in his leadership and technical skills. Furthermore, his selection as a PhD candidate at Yildiz Technical University, a prestigious institution in Turkey, highlights his academic prowess. Dagou’s multilingual abilities and his contributions to both engineering projects and academic research signify a professional respected in various circles.

Research Focus

Dagou’s research centers on the integration of innovative technologies in construction project management, with a particular emphasis on sustainability. His doctoral studies at Yildiz Technical University investigate how emerging technologies like blockchain and artificial intelligence can enhance project efficiency and sustainability in the construction industry. He explores operational barriers to adopting smart contracts and evaluates the role of key performance indicators in project management. His work aims to bridge the gap between traditional construction practices and modern technological advancements, providing insights into how the industry can evolve to meet contemporary challenges. Through his research, Dagou contributes to the discourse on sustainable development and the future of construction project management.

Publication Top Notes

  • ๐Ÿ“˜ The Future of Construction: Integrating Innovative Technologies for Smarter Project Management (May 2025)

  • ๐Ÿ“˜ Navigating the Landscape of Innovative Technologies in Construction Project Management: A Comprehensive Review (December 2024)

  • ๐Ÿ“˜ Blockchain and AI for Sustainable Supply Chain Management in Construction (August 2024)

  • ๐Ÿ“˜ Operational Barriers against the Use of Smart Contracts in Construction Projects (June 2023)

  • ๐Ÿ“˜ Using Key Performance Indicators in Construction Project Literature (November 2022)

  • ๐Ÿ“˜ ร‰tudes Comparatives des Caractรฉristiques Mรฉcaniques des Ciments (2018)