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负载于铂沉积泡沫铜阴极上的Cu(BTC)-rGO催化剂的制备,用于在光电化学电池中还原一氧化碳。

Preparation of a Cu(BTC)-rGO catalyst loaded on a Pt deposited Cu foam cathode to reduce CO in a photoelectrochemical cell.

作者信息

Cheng Jun, Xuan Xiaoxu, Yang Xiao, Zhou Junhu, Cen Kefa

机构信息

State Key Laboratory of Clean Energy Utilization, Zhejiang University Hangzhou 310027 China

出版信息

RSC Adv. 2018 Sep 18;8(56):32296-32303. doi: 10.1039/c8ra05964k. eCollection 2018 Sep 12.

Abstract

To increase the reaction productivity and selectivity of the CO photoelectrochemical reduction reaction, a Cu (benzene 1,3,5-tricarboxylic acid [BTC])-reduced graphite oxide (rGO) catalyst was prepared by using a facile hydrothermal method and used in a CO photoelectrochemical cell (PEC) as a cathode catalyst. Characterization of the catalyst proved that successfully bonding of rGO to Cu(BTC) not only facilitated faster transfer of electrons on the surface of the catalyst but also created more active sites. CO photoelectrochemical reduction experimental results showed that the total carbon atom conversion rate was up to 3256 nmol h cm which was much higher than when pure Cu(BTC) was used as a cathode catalyst. The liquid product's selectivity to alcohols was up to 95% when -2 V voltage was applied to the system with Cu(BTC)-rGO used as the cathode catalyst.

摘要

为提高CO光电化学还原反应的反应生产率和选择性,采用简便的水热法制备了一种Cu(苯-1,3,5-三甲酸[BTC])-还原氧化石墨烯(rGO)催化剂,并将其用作CO光电化学电池(PEC)的阴极催化剂。催化剂表征证明,rGO与Cu(BTC)的成功结合不仅促进了催化剂表面电子的更快转移,还创造了更多活性位点。CO光电化学还原实验结果表明,总碳原子转化率高达3256 nmol h cm,远高于以纯Cu(BTC)作为阴极催化剂时的转化率。当以Cu(BTC)-rGO作为阴极催化剂,对系统施加-2 V电压时,液体产物对醇类的选择性高达95%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8ae/9086171/7b7ca4b26fb1/c8ra05964k-f1.jpg

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