Mechanochemical synthesis of advanced nanomaterials for catalytic applications

Mechanochemical synthesis of advanced nanomaterials for catalytic applications
复制标题

DOI:
10.1039/c4cc09876e
复制
发表时间:
2015-01-01
影响因子:
4.9
通讯作者:
Luque, Rafael
Luque, Rafael
中科院分区:
化学2区
文献类型:
--
作者:
Xu, Chunping;De, Sudipta;Luque, Rafael

文献摘要

被引文献

相似文献

机械化学合成成为最有利的,对环境无害的替代传统路线的纳米材料制备与先进的应用程序具有突出的性能。机械力化学具有简单、重现性高、反应条件温和/短和通常无溶剂的条件(干磨)等特点,可以为开发先进的催化活性材料提供巨大的可能性。提出的贡献已被旨在提供一个显着的机械化学合成的固相先进的催化剂,而不是传统的系统的最新发现和进展的简要说明。重点讨论了机械能在固体催化剂合成及其应用中的作用,并研究了合成过程对催化剂物理化学性质和效率的影响。这篇专题文章的主要目的是强调机械化学协议在催化应用(纳米)材料工程中的可能性。
Mechanochemical synthesis emerged as the most advantageous, environmentally sound alternative to traditional routes for nanomaterials preparation with outstanding properties for advanced applications. Featuring simplicity, high reproducibility, mild/short reaction conditions and often solvent-free condition (dry milling), mechanochemistry can offer remarkable possibilities in the development of advanced catalytically active materials. The proposed contribution has been aimed to provide a brief account of remarkable recent findings and advances in the mechanochemical synthesis of solid phase advanced catalysts as opposed to conventional systems. The role of mechanical energy in the synthesis of solid catalysts and their application is critically discussed as well as the influence of the synthesis procedure on the physicochemical properties and the efficiency of synthesized catalysts is studied. The main purpose of this feature article is to highlight the possibilities of mechanochemical protocols in (nano) materials engineering for catalytic applications.