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用于电化学二氧化碳还原反应的氮化碳纳米片负载氧化铜纳米复合材料

-CN Nanosheet Supported CuO Nanocomposites for the Electrochemical Carbon Dioxide Reduction Reaction.

作者信息

Sung Chien-Lin, Wang Ren-Hung, Shih You-Cheng, Wu Zhi-Ying, Alvarado Samuel R, Chang Yu-Hsu, Lin Chia-Cheng

机构信息

Institute of Mineral Resources Engineering, Department of Materials and Mineral Resources Engineering, National Taipei University of Technology, Taipei 106344, Taiwan.

Department of Chemistry and Biotechnology, University of Wisconsin-River Falls, River Falls, Wisconsin 54022, United States.

出版信息

ACS Omega. 2023 Feb 14;8(8):7368-7377. doi: 10.1021/acsomega.2c05513. eCollection 2023 Feb 28.

Abstract

We have prepared CuO-derived electrocatalysts on a graphitic carbon nitride (-CN) nanosheet support for the electrochemical carbon dioxide reduction reaction (CORR). Highly monodisperse CuO nanocrystals made by a modified colloidal synthesis method serve as the precatalysts. We use a two-stage thermal treatment to address the active site blockage issues caused by the residual C18 capping agents. The results show that the thermal treatment effectively removed the capping agents and increased the electrochemical surface area. During the process, the residual oleylamine molecules incompletely reduced CuO to a CuO/Cu mixed phase in the first stage of thermal treatment, and the following treatment in forming gas at 200 °C completed the reduction to metallic Cu. The CuO-derived electrocatalysts show different selectivities over CH and CH, and this might be due to the synergistic effects of Cu--CN catalyst-support interaction, varied particle sizes, dominant surface facets, and catalyst ensemble. The two-stage thermal treatment enables sufficient capping agent removal, catalyst phase control, and CORR product selection, and with precise controls of the experimental parameters, we believe that this will help to design and fabricate -CN-supported catalyst systems with narrower product distribution.

摘要

我们在石墨相氮化碳(g-CN)纳米片载体上制备了用于电化学二氧化碳还原反应(CORR)的CuO衍生电催化剂。通过改进的胶体合成方法制备的高度单分散CuO纳米晶体用作预催化剂。我们采用两阶段热处理来解决由残留的C18封端剂引起的活性位点堵塞问题。结果表明,热处理有效地去除了封端剂并增加了电化学表面积。在此过程中,残留的油胺分子在热处理的第一阶段将CuO不完全还原为CuO/Cu混合相,随后在200°C的形成气体中进行处理,将其完全还原为金属Cu。CuO衍生的电催化剂对CH4和C2H4表现出不同的选择性,这可能是由于Cu-g-CN催化剂-载体相互作用、不同的粒径、占主导地位的表面晶面和催化剂组合的协同效应。两阶段热处理能够充分去除封端剂、控制催化剂相并选择CORR产物,并且通过精确控制实验参数,我们相信这将有助于设计和制造具有更窄产物分布的g-CN负载催化剂体系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6feb/9979231/beef6a017468/ao2c05513_0002.jpg

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