A monolithic gold nanoparticle@metal-organic framework composite as CO2 photoreduction catalyst

被引:0
|
作者
Tian T. [1 ]
Xu J. [2 ]
Abdolazizi A. [3 ]
Ji C. [2 ]
Hou J. [4 ]
Riley D.J. [2 ]
Yan C. [3 ]
Ryan M.P. [2 ]
Xie F. [2 ]
Petit C. [1 ]
机构
[1] Barrer Centre, Department of Chemical Engineering, Imperial College London, London
[2] Department of Materials and London Centre for Nanotechnology, Imperial College London, London
[3] School of Mechanical, Medical and Process Engineering, Centre for Materials Science, Queensland University of Technology, 4001, QLD
[4] School of Chemical Engineering, University of Queensland, 4072, QLD
基金
澳大利亚研究理事会;
关键词
CO[!sub]2[!/sub] photoreduction; Gold nanoparticles; Metal-organic frameworks; Monolith; Plasmonic effects;
D O I
10.1016/j.mtnano.2022.100293
中图分类号
学科分类号
摘要
The application of metal-organic frameworks (MOFs), especially MOF composites, has been hindered by a lack of method to process powders into useable forms. To address this challenge, we report here a low temperature synthesis method that enables direct formation of a densified monolithic MOF composite, i.e. Au@ZIF-67. The monolithic composite contains Au nanoparticles (Au NPs) that are well-dispersed and encapsulated within ZIF-67 particles. It exhibits high surface area, bulk density, and mechanical robustness as observed in monolithic ZIF-67, while retaining the localized surface plasmonic resonance (LSPR) characteristic of Au NPs. Benefiting from this unique combination, the monolithic Au@ZIF-67 samples display an enhanced CO2 photoreduction performance under visible light—with the best-performing Au@ZIF-67 sample showing a volumetric CO production rate 1.5 and 3 times higher compared to the pristine monolithic ZIF-67 and ZIF-67 powder, respectively. © 2022 The Author(s)
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