Mr. Safdar Ali Amur | Metal-organic frameworks | Best Researcher Award
Mr. Safdar Ali Amur, Beijing University of Chemical Technology, China
Safdar Ali Amur is a dedicated biochemist and nanotechnology researcher, currently pursuing a Ph.D. in Chemical Engineering & Technology at Beijing University of Chemical Technology. His research focuses on metal-organic frameworks (MOFs) for antibacterial applications and pH-responsive drug delivery systems. With expertise in drug synthesis, computational chemistry, and quality control, he has contributed significantly to biotechnology, pharmaceuticals, and food sciences. His work has been published in prestigious international journals, highlighting his commitment to innovative biochemical solutions. Alongside academia, he has experience as a lecturer, medical technologist, and microbiologist, further solidifying his multidisciplinary expertise. ππ¬
Professional Profile:
Suitability for Best Researcher Award: Safdar Ali Amur
Dr. Safdar Ali Amur is a highly accomplished researcher in biochemistry and nanotechnology, specializing in metal-organic frameworks (MOFs) for antibacterial applications and drug delivery systems. His expertise spans multiple scientific domains, including drug synthesis, computational chemistry, and quality control, demonstrating a multidisciplinary approach to solving critical challenges in pharmaceuticals, biotechnology, and medical sciences. His dedicated research, scientific publications in high-impact journals, and awards for excellence position him as a strong contender for a Best Researcher Award.
π Education & Experience
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π Ph.D. (Chemical Engineering & Technology) β Beijing University of Chemical Technology (2018 β Present)
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Research: Metal-Organic Frameworks for Drug Delivery & Antibacterial Applications
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π M.Phil. (Biochemistry) β University of Sindh (2014 β 2017)
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Thesis: Serum Lipid Alterations in Cancer Patients
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π B.Sc. (Biochemistry) β University of Sindh (2009 β 2012)
π¬ Work Experience:
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π¨βπ¬ Ph.D. Researcher β Beijing University of Chemical Technology (2023 β Present)
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π§βπ« Lecturer in Biochemistry β Beachwood Institute of Nursing (2022 β 2023)
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π§ͺ Medical Technologist & Lab In-Charge β Ghazi Pathology Laboratory (2021 β 2023)
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π Microbiologist & QC Officer β Taj Fisheries Pvt. Ltd. (2017 β 2018)
π Professional Development
Safdar Ali Amur is continuously engaged in scientific advancements and professional growth. His expertise spans nanotechnology, drug delivery, and biochemical research, making significant contributions to pharmaceuticals, biotechnology, and medical sciences. He actively participates in scientific conferences, research collaborations, and interdisciplinary studies, refining his knowledge in molecular modeling (DFT), analytical instrumentation, and spectroscopic techniques. His work with MOFs for targeted drug delivery and antibacterial applications underscores his innovative approach in tackling global health challenges. Through teaching, research, and laboratory management, he ensures the next generation of scientists gains practical and theoretical insights into biochemical applications. ππ¬
π¬ Research Focus Areas
Safdarβs research revolves around cutting-edge biochemical innovations, particularly in:
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π Drug Delivery & Encapsulation β Developing nanocarriers for controlled and targeted drug release
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π¦ Antibacterial Applications β Engineering metal-organic frameworks (MOFs) for pathogen-resistant materials
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π§ͺ Nanotechnology & Biomaterials β Exploring nanomaterials for therapeutic and biomedical applications
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𧬠Computational Chemistry & Molecular Modeling (DFT) β Understanding drug-material interactions through simulation studies
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π§ββοΈ Biotechnology & Pharmaceutical Sciences β Innovating bioactive compounds for medical and industrial applications
Publication Top Notes:
1οΈβ£ Analysis of metal content in Bitter gourd (Momordica charantia linn.) cultivated in Kaloi, Tharparkar, Sindh, Pakistan
2οΈβ£ Synthesis, Characterization, Density Functional Theory Study, Antibacterial Activity and Molecular Docking of Zeolitic Imidazolate Frameworkβ8
3οΈβ£ Endogenous crude Scutellaria baicalensis polysaccharide robustly enhances one-pot extraction and deglycosylation of baicalin
4οΈβ£ Encapsulation of natural drug gentiopicroside into zinc-based Zeolitic Imidazolate Frameworks (ZIF-8): In-vitro drug release and improved antibacterial activity
5οΈβ£ Facile Grafting of Silver Nanoparticles into Copper and Guanosine 5β²-Monophosphate Metal Organic Frameworks (AgNPs@Cu/GMP): Characterization and Antimicrobial Activity