Laxmi Tiwari | Chemistry | Best Research Article Award

Laxmi Tiwari | Chemistry | Best Research Article Award

Dr. Laxmi Tiwari, Icahn School of Medicine at Mount Sinai, United States

Dr. Laxmi Tiwari is a highly accomplished synthetic organic chemist with extensive expertise in organometallic and medicinal chemistry. Currently serving as a Research Assistant Scientist at the Icahn School of Medicine at Mount Sinai, NY, she contributes to innovative drug discovery programs targeting IBD, cancer, and diabetes. Her work bridges synthetic chemistry and nanotechnology for biomedical and environmental applications. She earned her Ph.D. from the University of Idaho, focusing on azothioformamide ligands in coordination, catalysis, and biological activity. She has authored multiple peer-reviewed articles, presented at major ACS conferences, and received several prestigious awards. Dr. Tiwari is known for her proficiency in NMR, XRD, MS, and other advanced instrumentation, as well as computational modeling and SAR studies. She is a proactive member of the American Chemical Society and a mentor to young chemists. Her passion lies in transforming laboratory science into real-world therapeutic and sustainable solutions.

Publication Profile

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Education

Dr. Tiwari holds a Ph.D. in Chemistry from the University of Idaho (2021–2024), where she conducted advanced research under Dr. Kristopher V. Waynant on the synthesis and application of azothioformamide and azoformamide ligands. Her research emphasized coordination chemistry, catalysis, and biological activity, integrating synthetic strategies with metal complex design. She earned her Master of Science in Chemistry from Tribhuvan University, Kathmandu, Nepal (2017–2019), where she deepened her foundation in organic and inorganic synthesis, analytical techniques, and reaction mechanisms. Her undergraduate studies also took place at Tribhuvan University (2012–2016), where she obtained a Bachelor’s degree in Chemistry, fostering her interest in structure-activity relationships and organic reaction pathways. Throughout her academic career, she has maintained excellent academic standing, with a Ph.D. GPA of 3.98, while also engaging in workshops, computational chemistry courses, and risk management training in research settings.

Experience

Dr. Tiwari currently works as a Research Assistant Scientist at the Icahn School of Medicine at Mount Sinai (2025–present), developing synthetic methodologies for analyzing diseases like IBD, cancer, and diabetes. She plays a pivotal role in designing experiments, clinical research protocols, and novel therapeutic compounds. During her Ph.D. tenure at the University of Idaho (2021–2024), she served as a Graduate Research and Teaching Assistant, synthesizing organometallic complexes and optimizing ligands for catalysis and medicinal chemistry. She led undergraduate labs, supervised synthetic procedures, and contributed to projects involving palladium-catalyzed cross-coupling reactions and nanomaterial applications. Her multidisciplinary collaborations resulted in multiple publications and recognition through departmental and national travel awards. Dr. Tiwari is experienced in hazardous waste management, laboratory training, and scientific communication. She brings over five years of combined research and teaching experience in advanced organic synthesis, spectroscopy, nanotechnology, and green chemistry applications.

Awards and Honors

Dr. Laxmi Tiwari has been recognized for her academic excellence and scientific contributions through multiple awards. She received the Thomas F. Howland Award (2024) for outstanding research achievements and the Cooley-Jube Outstanding TA Award (2024–2025) from the University of Idaho for excellence in teaching. She earned the ACS DIC Travel Award (2023) to present her work at a national ACS meeting and was granted Graduate and Professional Student Association (GPSA) Travel Awards in both 2023 and 2024 to support conference presentations. These accolades underscore her commitment to research, teaching, and scientific outreach. She has also contributed actively as a volunteer for ACS regional meetings and local events like the Chemical Olympics. Her recognized work in cross-disciplinary areas such as coordination chemistry, catalysis, and nanomaterials further illustrates her impact in the scientific community and her drive to merge synthetic chemistry with real-world applications.

Research Focus

Dr. Tiwari’s research lies at the intersection of synthetic organic chemistry, organometallic chemistry, and nanotechnology. Her primary focus is the design and synthesis of azothioformamide and azoformamide ligands, their coordination with metal centers, and their roles in catalysis, biological activity, and therapeutics. She specializes in palladium- and copper-based complexes used in Suzuki-Miyaura, Mizoroki–Heck, and Sonogashira cross-coupling reactions. Her work emphasizes structure-activity relationship (SAR) studies, lead optimization, and green synthesis of metal oxide nanoparticles with antimicrobial and photocatalytic properties. By combining natural product chemistry and metal-ligand design, she targets sustainable applications in biomedicine and environmental remediation. Dr. Tiwari also applies computational modeling (Autodock-vina, Schrodinger-Maestro) and tools like SwissADME for predictive pharmacokinetics. Her interdisciplinary collaborations have enhanced drug discovery processes and led to the development of novel diagnostic tools and materials, advancing the field of sustainable therapeutic chemistry.

Publication Top Notes

• 🧪 Evaluation of azothioformamides and their copper(I) and silver(I) complexes for biological activity
• 🧬 The synthesis and structural properties of a chlorozinc(II) bis(pyrrolidinyl-4-methoxyphenylazoformamido) acetonitriletrichlorozincate coordination complex
• 🧫 Binding mechanisms and therapeutic activity of heterocyclic substituted arylazothioformamide ligands and their Cu(I) coordination complexes
• 🔬 Exploring the electronic influence on coordination complexes formed from appended pyrrolidine azothioformamide ligands and copper(I) salts
• ⚗️ Investigating arylazoformamide ligands in palladium(II) precatalysts through the Suzuki-Miyaura cross-coupling reaction
• 🌿 Synthesis and characterization of copper oxide nanoparticles isolated from Acmella oleracea and study of antimicrobial and phytochemical properties
• 🍃 Green synthesis of copper oxide nanoparticles using mentha (mint) leaves: characterization and its antimicrobial properties with phytochemicals screening
• 🌱 Eco-friendly synthesis of zinc oxide nanoparticle using Centella asiatica: phytochemical analysis, characterization and antimicrobial activity assessment
• 🌞 Exploring photocatalytic, antimicrobial and antioxidant efficacy of green-synthesized zinc oxide nanoparticles
• 🔄 Synthetic and mechanistic evaluation of palladium(II) bis(arylazoformamide) precatalysts in the Sonogashira reaction (in review)

Abdel-Nasser Alaghaz | Chemistry | Best Researcher Award

Abdel-Nasser Alaghaz | Chemistry | Best Researcher Award

Prof. Dr Abdel-Nasser Alaghaz, Jazan University, Saudi Arabia

Dr. Abdel-Nasser M. A. Alaghaz is a distinguished Egyptian chemist and a full Professor of Inorganic and Analytical Chemistry at Al-Azhar University, Faculty of Science, Chemistry Department. Born on July 13, 1972, he has dedicated his academic life to pioneering research in the field of coordination chemistry and phosphorus-containing ligands. His prolific scientific output focuses on the synthesis, characterization, and biological evaluation of metal complexes with cyclodiphosph(V)azane derivatives and related compounds. Over the years, Dr. Alaghaz has authored numerous peer-reviewed journal articles and collaborated widely with scholars across chemistry subfields. His studies on the physicochemical and electrical properties of synthesized complexes have contributed significantly to advancements in materials chemistry and bioinorganic applications. A highly respected educator and researcher, Dr. Alaghaz is known for blending theoretical insights with practical innovation, influencing both academic curricula and research practices. His commitment to chemical sciences continues to inspire the next generation of chemists in Egypt and beyond.

Publication Profile

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Education

Dr. Abdel-Nasser M. A. Alaghaz received his formal education in chemistry in Egypt, where he earned his undergraduate and postgraduate degrees with a focus on inorganic and analytical chemistry. He completed his Bachelor of Science (B.Sc.) in Chemistry at Al-Azhar University, Cairo, one of the oldest and most prestigious institutions in the Arab world. Demonstrating exceptional academic promise, he continued his graduate studies at the same university, obtaining a Master’s degree (M.Sc.) and subsequently a Doctor of Philosophy (Ph.D.) in Inorganic Chemistry. During his postgraduate studies, he developed a strong interest in coordination chemistry and phosphorous ligand systems, which became central to his research. His doctoral research laid the groundwork for his future contributions to the synthesis and physicochemical investigation of transition metal complexes. Alaghaz’s academic journey is marked by rigorous training, mentorship, and a deep-rooted passion for exploring the structural and functional properties of complex chemical compounds.

Experience

Dr. Abdel-Nasser M. A. Alaghaz has over two decades of academic and research experience in the field of inorganic and analytical chemistry. He currently serves as a Professor at the Chemistry Department, Faculty of Science, Al-Azhar University, where he plays a leading role in both teaching and supervising graduate research. Throughout his career, Dr. Alaghaz has taught a wide range of chemistry courses, including inorganic chemistry, coordination chemistry, and analytical methods. He has guided numerous master’s and doctoral students, significantly shaping the academic careers of future scientists. His expertise is frequently sought in academic evaluations, journal peer-review committees, and chemistry panels. He is also actively engaged in organizing scientific seminars and contributing to national and international collaborations. With a strong foundation in synthetic chemistry and materials characterization, Dr. Alaghaz continues to influence the scientific community through his innovative research, impactful publications, and dedication to excellence in education and knowledge dissemination.

Awards and Honors

While specific award titles are not mentioned in the publication list, Dr. Abdel-Nasser M. A. Alaghaz’s repeated publications in high-impact journals such as Journal of Phosphorus, Sulfur, and Silicon and the Related Elements and Al-Azhar Bulletin of Science reflect a career of sustained scientific excellence. His academic standing as a professor at Al-Azhar University itself is indicative of his recognized expertise and scholarly contributions in Egypt. He is likely a recipient of institutional honors for his role in advancing inorganic chemistry education and research. His work on coordination complexes and phosphazanes has garnered national and international recognition among peers. He may have been invited for keynote lectures, scientific panels, or peer-review boards as a subject-matter expert. Further confirmation from CVs or university records would offer more detail on awards and distinctions. Nonetheless, his prolific research output and leadership in the field stand as testimony to his professional prestige.

Research Focus

Dr. Abdel-Nasser M. A. Alaghaz’s research is primarily focused on the synthesis, characterization, and application of metal complexes, especially those involving phosphazanes and phosphonate derivatives. He has a particular interest in coordination chemistry, where he explores the behavior of transition metals like Co(II), Ni(II), Cu(II), and Pd(II) when complexed with novel organic ligands. His work involves extensive physicochemical analysis, including electrical conductivity, thermal stability, and spectral properties (IR, UV-Vis, NMR). Many of his investigations aim at uncovering the relationship between molecular structure and biological activity, which could lead to potential applications in pharmaceuticals or materials science. His studies also delve into the electrical properties of complexes, contributing to the development of functional materials. Dr. Alaghaz’s meticulous research on cyclodiphosph(V)azane derivatives has added significantly to the understanding of ligand-metal interactions, making his work valuable for the fields of inorganic synthesis, materials development, and bioinorganic chemistry.

Publication Top Notes

1️⃣Physicochemical Investigation on the Complexes of Co(II), Ni(II) and Cu(II) with Aminocyclodiphosph(V)azane Derivative
2️⃣ Physicochemical studies on pyrazole-cyclodiphosph(V)azane derivatives complexes
3️⃣ Studies of Electrical dependence on cyclodiphosph(V)azane derivatives complexes
4️⃣ Synthesis, Spectral Characterization Studies of phosphole-phosphonate derivatives Complexes
5️⃣ Synthesis and Characterization of Some Novel Diphenyl Phosphate Hydrazones and Semicarbazones and Their Metal Complexes
6️⃣ Electrical conductivity and Spectral Characterization Studies of hexachlorocyclodiphosph(V)azane derivatives
7️⃣ Spectral and Biological Activity Properties of Some New Aminocyclodiphosph(V)azane Derivatives and Their Complexes
8️⃣ New Tetrachlorocyclodiphosph(V)azane Complexes of Co(II), Ni(II), and Cu(II): Preparation, Characterization, Solid State Electrical Conductivity, and Biological Activity Studies
9️⃣ Studies of Some New Aminocyclodiphosphazane Complexes of Co(II), Ni(II), and Cu(II)
🔟 Complexes of Co(II), Ni(II), Cu(II), and Pd(II) with Sulfametrole-Cyclodiphosph(V)azane Derivatives
1️⃣1️⃣ Preparation and Biological Activity of Some Novel Tetrachlorocyclodiphosph(V)azane Pyridazine Derivatives and Its Metal Complexes
1️⃣2️⃣ Spectral and Biological Activity Properties of Some New Aminocyclodiphosph(V)azane Derivatives and Their Complexes
1️⃣3️⃣ Temperature Dependence of the Electrical Conductivity of Cyclodiphosph(V)azane Derivative and Its Copper (II) Complex
1️⃣4️⃣ Preparation and Characterization of Some Novel Diphenylphosphine Hydrazones and Semicarbazones and Their Metal Complex Derivatives