Noor Zulfiqar | Chemistry | Inspirational Scientist Visionary Award

Ms. Noor Zulfiqar | Chemistry | Inspirational Scientist Visionary Award

University of Agriculture Faisalabad | Pakistan

An award-winning chemist, researcher, and academic professional with multidisciplinary expertise in organic chemistry, green and magnetic nanotechnology, Chemistry environmental sustainability, and ecotoxicology. Recognized for excellence in research, scientific publishing, and higher education teaching, with strong specialization in photocatalysis, photolysis, and nanoscale material design for environmental remediation. Research contributions focus on the green synthesis of magnetic nanocomposites for photocatalytic degradation and adsorptive removal of environmental pollutants, particularly wastewater contaminants, supporting sustainable solutions for pollution control and public health protection. Experienced in laboratory research, materials innovation, data analysis, and interdisciplinary collaboration across chemistry, nanotechnology, and environmental sciences. Actively engaged in scholarly publishing as a certified peer reviewer and scientific content specialist, contributing to the quality, integrity, and advancement of global research. Skilled in research writing, academic editing, graphical design, and knowledge dissemination for high-impact journals and scientific platforms. Academic and professional work reflects a strong commitment to sustainability, innovation, and science-driven solutions to real-world challenges. Known for strategic thinking, collaborative leadership, and the ability to integrate research, education, and communication to create meaningful scientific impact across academic, industrial, and environmental domains.

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Featured Publications


Synthesis of metal nanoparticles and their role in degradation of pesticides/herbicides: a review

– Discover Applied Sciences, 7(6), 558 (2025) | N. Zulfiqar, M. Ali, F. Inam, S. Khawaja, H.A. Raza, F. Khan

The traditional uses, pharmacology, and phytochemistry of Peucedanum praeruptorum Dunn

– Frontiers in Pharmacology, 15, 1352657 (2024) | Q. Wang, Q. Sun, Q. Huang, L. Qin, B. Zhu

Exploring the phytochemistry and pharmacology of Mangifera indica L. (Mango) leaves: A review

– International Journal of Plant Based Pharmaceuticals, 4(1), 9–18 (2024) | H. Mehmood, J. Mehmood, N. Zulfiqar

Njemuwa Nwaji | Chemistry and Materials Science | Research Excellence Distinction Award

Assist. Prof. Dr. Njemuwa Nwaji | Chemistry and Materials Science | Research Excellence Distinction Award

Institute of Fundamental Techmological Research, Polish Academy of Science | Poland

The research focuses on nanotechnology-driven solutions for energy storage, energy conversion, and advanced functional materials. Core expertise lies in the rational synthesis of novel nanostructured materials with tailored physicochemical properties for next-generation electronic and energy applications. Significant contributions have been made in the development of advanced nanomaterials for photo- and electrocatalysis, particularly targeting efficient hydrogen production through water splitting by optimizing catalyst composition, morphology, and interfacial charge-transfer processes. Another major research direction involves energy storage systems, with an emphasis on designing high-performance electrode materials for supercapacitors using diverse synthetic strategies to achieve enhanced capacitance, stability, and rate capability. In addition, research extends into biocompatible nanomaterials, including hydrogel- and fiber-based systems for biomedical applications such as controlled drug delivery and self-powered implantable devices. The work integrates materials chemistry, nanofabrication, and electrochemical characterization to address critical challenges in sustainable energy technologies. Collaborative and interdisciplinary research efforts have resulted in impactful publications and the supervision of graduate-level research projects in nanomaterials synthesis, catalysis, and energy-related applications, contributing to advancements in clean energy and functional nanomaterials research.

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Featured Publications