Deka Pangkita, Borah Biraj Jyoti, Saikia Himadri, Bharali Pankaj
Department of Chemical Sciences, Tezpur University, Napaam, 784 028, Assam, India.
Chem Rec. 2019 Feb;19(2-3):462-473. doi: 10.1002/tcr.201800055. Epub 2018 Aug 17.
This account provides an overview of current research activities on nanoparticles containing the earth-abundant and inexpensive element copper (Cu) and Cu-based nanoparticles, especially in the field of environmental catalysis. The different synthetic strategies with possible modification of the chemical/ physical properties of these nanoparticles using such strategies and/or conditions to improve catalytic activity are presented. The design and development of support and/or bimetallic systems (e. g., alloys, intermetallic, etc.) are also included. Herein, we report synthetic approaches of Cu and Cu-based nanoparticles (monometallic copper, bimetallic copper and copper (II) oxide nanoparticles/nanostructures) and impregnation of such nanoparticles onto support material (e. g., Co O nanostructure), along with their applications as environmental catalyst for various oxidation and reduction reactions. Finally, this account provides necessary advances and perspectives of Cu-based nanoparticles in the environmental catalysis.
本综述概述了当前关于含有地球上储量丰富且价格低廉的元素铜(Cu)的纳米颗粒以及铜基纳米颗粒的研究活动,特别是在环境催化领域。介绍了不同的合成策略,以及使用这些策略和/或条件对这些纳米颗粒的化学/物理性质进行可能的改性以提高催化活性。还包括载体和/或双金属体系(例如合金、金属间化合物等)的设计与开发。在此,我们报告了铜和铜基纳米颗粒(单金属铜、双金属铜和氧化铜纳米颗粒/纳米结构)的合成方法,以及将此类纳米颗粒负载到载体材料(例如CoO纳米结构)上的方法,同时还介绍了它们作为环境催化剂用于各种氧化和还原反应的应用。最后,本综述提供了铜基纳米颗粒在环境催化方面的必要进展和前景。