Publication: Solvent-free methods in nanocatalysis: from catalyst design to applications
Program
KU-Authors
KU Authors
Co-Authors
Luque, Rafael
Gawande, Manoj B.
Goswami, Anandarup
Advisor
Publication Date
2023
Language
en
Type
Book
Journal Title
Journal ISSN
Volume Title
Abstract
Solvent-Free Methods in Nanocatalysis Discover solvent-free approaches for the synthesis of nanocatalysts as well as various catalytic transformations in this unique one-stop resource Solvent-free methods have attracted wide attention in organic synthesis and catalysis as a promising approach towards "greener" and more sustainable chemical transformations. In this regard, nanocatalysis has seen particular growth in recent years. Solvent-Free Methods in Nanocatalysis gives an in-depth overview of nanocatalysts and their catalytic applications using solvent-free methods. After a brief introduction, it covers various synthetic techniques for the preparation of nanocatalysts and supports using solvent-free methods, e.g. ball-milling, microwave- and plasma-assisted methods. The book discusses in detail different catalyst classes, such as metal oxides, doped and functionalized nanocarbons, as well as nitride- and silica-based materials to help researchers to understand the efficiency and nature of these catalysts/supports based on their chemical structure. In the book readers will also find: • A brief account of the history, challenges, and recent advances in the field • Detailed discussion of advantages and disadvantages of solvent-free techniques for nanocatalyst preparation • Treatment of important solvent- and catalyst-free organic transformations (i.e. oxidation, coupling and multicomponent reactions) • A chapter on supported ionic liquids for solvent-free catalysis Written by leading researchers in the field, Solvent-Free Methods in Nanocatalysis is a useful reference for researchers and students working in organic synthesis, catalysis, and nanomaterials science. © 2023 WILEY-VCH GmbH, Boschstr. 12, 69469 Weinheim, Germany. All rights reserved.
Description
Source:
Solvent-Free Methods in Nanocatalysis: From Catalyst Design to Applications
Publisher:
Wiley-Vch Verlag
Keywords:
Subject
Nanoparticle, Ionic liquid, Hydrogenation