About
Dr. Bhasha Sharma is a visiting faculty member at University of Delhi, India. She holds a BSc in Polymer Sciences (2011) and a Ph.D. in Chemistry (2019) from the University of Delhi, where she studied under the guidance of Dr. Purnima Jain. A prolific scholar, Dr. Sharma has published numerous articles in leading international journals and contributed over 20 book chapters. Her latest edited work, Graphene-based Biopolymer Nanocomposites, was published by Springer Nature. She is also the editor of 3D Printing Technology for Sustainable Polymers and other forthcoming titles, including Biodegradability of Conventional Plastics, Sustainable Hydrogels, Biobased Sustainable Packaging, Nanofillers (Two Volume Set), and Polysaccharides: Advanced Polymeric Materials, accepted by esteemed publishers like Wiley, Elsevier, CRC Press, and Taylor and Francis. Dr. Sharma’s research focuses on sustainable polymer innovations for packaging, eco-friendly plastic degradation, bio nanocomposite fabrication, and enhancing the electrochemical properties of biopolymers. Notably, she was honoured with research awards from Netaji Subhas University of Technology in both 2023 and 2024.
Employment
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University of Delhi Visiting Faculty2025 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (67)
- Effect of water ageing on mechanical performance of Kenaf/PLA bio-composites Save
- Nanopaints Save
- Nanotechnology in crop disease management Save
- Preface Save
- Sustainable 3D Printing for Innovative Biopolymer Production and Applications Save
- The Framework of the Breakthroughs in the 3D Printing Technique Save
- An investigation of fatigue, creep, and dynamic mechanical behavior of bio-fiber-reinforced PLA and their hybrid biocomposites Save
- Deciphering the pathways for deployment of different architecture of chemically treated and untreated fibers in polymeric materials for performance enhancement Save
- Studies on mechanical, thermal, and water immersion of plant and animal wastage nanofiller–based bio-fiber-reinforced composites Save
- Graphene-based magnetic nanoparticles Save