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金属有机框架衍生的NiCoO多孔微棒实现高效且选择性的可见光驱动CO光还原为CO₂

Highly Efficient and Selective Visible-Light Driven Photoreduction of CO to CO by Metal-Organic Frameworks-Derived NiCoO Porous Microrods.

作者信息

Yang Hongli, Zhang Dongdong, Luo Yong, Yang Wenxiang, Zhan Xiaoqiang, Yang Weiyou, Hou Huilin

机构信息

School of Chemical Engineering & Technology, China University of Mining & Technology, Xuzhou, 221116, P. R. China.

Institute of Micro/Nano Materials and Devices, Ningbo University of Technology, Ningbo, 315211, P. R. China.

出版信息

Small. 2022 Oct;18(40):e2202939. doi: 10.1002/smll.202202939. Epub 2022 Sep 1.

Abstract

Photocatalytic CO reduction by solar energy into carbonaceous feedstock chemicals is recognized as one of the effective ways to mitigate both the energy crisis and greenhouse effect, which fundamentally relies on the development of advanced photocatalysts. Here, the exploration of porous microrod photocatalysts based on novel NiCoO solid solutions derived from bimetallic metal-organic frameworks (MOFs) is reported. They exhibit overall enhanced photocatalytic performance with both high activity and remarkable selectivity for reducing CO into CO under visible-light irradiation, which are superior to most related photocatalysts reported. Accordingly, the Ni -Co -O microrod (MR-N C O) photocatalyst delivers high efficiency for photocatalytic CO reduction into CO at a rate up to ≈277 µmol g h , which is ≈35 times to that of its NiO counterpart. Furthermore, they display a high selectivity of ≈85.12%, which is not only better than that of synthesized Co O (61.25%) but also superior to that of reported Co O -based photocatalysts. It is confirmed that the Co and Ni species are responsible for CO CO conversion activity and selectivity, respectively. In addition, it is verified, by adjusting the Ni contents, that the band structure of NiCoO microrods can be tailored with favorable reduction band potentials, which thus enhance the selectivity toward CO photoreduction.

摘要

通过太阳能将光催化CO还原为含碳原料化学品被认为是缓解能源危机和温室效应的有效途径之一,这从根本上依赖于先进光催化剂的开发。在此,报道了基于源自双金属金属有机框架(MOF)的新型NiCoO固溶体的多孔微棒光催化剂的探索。它们在可见光照射下表现出整体增强的光催化性能,对将CO还原为CO具有高活性和显著的选择性,优于大多数报道的相关光催化剂。因此,Ni -Co -O微棒(MR-N C O)光催化剂以高达≈277 µmol g h 的速率将光催化CO还原为CO具有高效率,这是其NiO对应物的≈35倍。此外,它们显示出≈85.12%的高选择性,这不仅优于合成的Co O(61.25%),而且优于报道的基于Co O的光催化剂。证实Co和Ni物种分别负责CO CO转化活性和选择性。此外,通过调节Ni含量证实,NiCoO微棒的能带结构可以通过有利的还原能带电位进行调整,从而提高对CO光还原的选择性。

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