This book provides a comprehensive exploration of the dynamic intersections between ionic liquids (ILs) and nanotechnology. Highlighting innovative strategies for industrial, environmental, and biomedical applications, this book presents insights into the latest research, sustainable solutions, and future prospects, making it a valuable resource for scientists, engineers, and policymakers.
Known as "designer solvents," ionic liquids exhibit exceptional properties like low vapor pressure and high thermal stability, enabling green chemistry applications in chemical synthesis, material design, and nanotechnology. This book examines ILs in green nanoparticle synthesis, where they offer eco-friendly advantages and precise control over size, shape, and surface chemistry. ILs also play a critical role in nanofluids, improving thermal conductivity, stability, and energy efficiency. Covering topics such as catalysis, environmental remediation, energy storage, and pharmaceutical applications, this book also addresses challenges like scalability, toxicity, and green chemistry integration, offering a forward-looking perspective on IL-based nanotechnology.
This book provides a comprehensive exploration of the dynamic intersections between ionic liquids (ILs) and nanotechnology. Highlighting innovative strategies for industrial, environmental, and biomedical applications, this book presents insights into the latest research, sustainable solutions, and future prospects, making it a valuable resource for scientists, engineers, and policymakers.
Known as "designer solvents," ionic liquids exhibit exceptional properties like low vapor pressure and high thermal stability, enabling green chemistry applications in chemical synthesis, material design, and nanotechnology. This book examines ILs in green nanoparticle synthesis, where they offer eco-friendly advantages and precise control over size, shape, and surface chemistry. ILs also play a critical role in nanofluids, improving thermal conductivity, stability, and energy efficiency. Covering topics such as catalysis, environmental remediation, energy storage, and pharmaceutical applications, this book also addresses challenges like scalability, toxicity, and green chemistry integration, offering a forward-looking perspective on IL-based nanotechnology.
Shrikaant Kulkarni
Ionic Liquid-Induced Nanomaterial Synthesis Nanofluid Design and Heat Transfer Applications Green Synthesis of Functional Nanomaterials Advanced Spectroscopic Techniques for IL-Based Nanomaterials Catalysis with Ionic Liquid-Coated Nanoparticles Nanotechnology in Batteries and Supercapacitors Biomedical Applications of ILs and Nanofluids Bionanofluid Properties and Applications AI-Driven Design of Nanomaterials and Nanofluids Sustainable Nanotechnology for Renewable Energy Toxicological Impacts of Ionic Liquids and Nanomaterials Case Studies in IL-Based Nanotechnology Applications