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钴的形态及碳基体的石墨化对Co/N掺杂碳材料CO电还原活性的影响

Effect of Cobalt Speciation and the Graphitization of the Carbon Matrix on the CO Electroreduction Activity of Co/N-Doped Carbon Materials.

作者信息

Iwase Kazuyuki, Ebner Kathrin, Diercks Justus S, Saveleva Viktoriia A, Ünsal Seçil, Krumeich Frank, Harada Takashi, Honma Itaru, Nakanishi Shuji, Kamiya Kazuhide, Schmidt Thomas J, Herranz Juan

机构信息

Research Center for Solar Energy Chemistry, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan.

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai, Miyagi 980-8577, Japan.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 7;13(13):15122-15131. doi: 10.1021/acsami.0c21920. Epub 2021 Mar 25.

Abstract

The electroreduction of carbon dioxide is considered a key reaction for the valorization of CO emitted in industrial processes or even present in the environment. Cobalt-nitrogen co-doped carbon materials featuring atomically dispersed Co-N sites have been shown to display superior activities and selectivities for the reduction of carbon dioxide to CO, which, in combination with H (i.e., as syngas), is regarded as an added-value CO-reduction product. Such catalysts can be synthesized using heat treatment steps that imply the carbonization of Co-N-containing precursors, but the detailed effects of the synthesis conditions and corresponding materials' composition on their catalytic activities have not been rigorously studied. To this end, in the present work, we synthesized cobalt-nitrogen co-doped carbon materials with different heat treatment temperatures and studied the relation among their surface- and Co-speciation and their CO-to-CO electroreduction activity. Our results reveal that atomically dispersed cobalt-nitrogen sites are responsible for CO generation while suggesting that this CO-selectivity improves when these atomic Co-N centers are hosted in the carbon layers that cover the Co nanoparticles featured in the catalysts synthesized at higher heat treatment temperatures.

摘要

二氧化碳的电还原被认为是工业过程中排放的甚至环境中存在的一氧化碳增值的关键反应。具有原子分散的钴-氮位点的钴-氮共掺杂碳材料已被证明在将二氧化碳还原为一氧化碳方面表现出优异的活性和选择性,一氧化碳与氢气(即合成气)结合被视为一种增值的一氧化碳还原产物。这种催化剂可以通过暗示含钴-氮前驱体碳化的热处理步骤来合成,但合成条件和相应材料组成对其催化活性的详细影响尚未得到严格研究。为此,在本工作中,我们合成了具有不同热处理温度的钴-氮共掺杂碳材料,并研究了它们的表面和钴形态与其一氧化碳电还原活性之间的关系。我们的结果表明,原子分散的钴-氮位点是一氧化碳生成的原因,同时表明当这些原子钴-氮中心存在于覆盖在较高热处理温度下合成的催化剂中钴纳米颗粒的碳层中时,这种一氧化碳选择性会提高。

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