Polymer gels and supramolecular gels are interesting classes of materials that continue to attract significant research interest.
Bringing together recent scientific and technological advances, the volume offers an up-to-date overview for researchers and technologists alike. It discusses key aspects such as the fabrication and patterning of gel materials, their physical, optical, mechanical, and electronic characteristics, and their use in areas including energy technologies, environmental solutions, and biotechnology.
Distinguished by its depth of analysis and broad international relevance, this work serves as an essential resource for readers seeking insight into contemporary developments and emerging directions in gel science.
Prof. A .K .Nandi completed Ph.D in 1986 at Indian Association for the Cultivation of Science (IACS) in Thermodynamics of Polymer-Polymer and Polymer-Solvent mixing and did post doc with Prof L. Mandelken on Crystallization of Polymers. He has joined at IACS in 1992 after 9 years of teaching at undergraduate and post graduate classes of different universities. So far he has published 227 research articles, four book chapters, and produced 32 Ph.Ds (+5 in progress). His research mainly involves synthesis of different graft copolymers, polymer nanocomposite, Polymer and supramolecular gelation, crystallization of polymers, polymer- biomolecular hybrids, polymer photo voltaics, polymer blends etc. In the synthesis field he grafted poly(vinylidene fluoride) and polythiophene with different thermo and pH sensitive polymers, for antifouling membrane, supertough and supergluing, optoelectronic and sensor materials, In polymer nanocomposites he improved mechanical, optoelectronic, conuctivity, dielectric and photovoltaic properties. He applied this composites in drug delivery, delectric, photovoltaic and super capacitors. In polymer and supramolecular gelation he elaborated mechanism of gelation using percolation theory, made conducting gels, hybrid gels used them in forming porous materials, opto-electronic materials, including sensors. In photovoltaics he replaced TiO2 with graphene polymer hybrids, engineered interface of perovskite solar cell and tuned band gap.