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用于选择性电催化环辛烯环氧化的氧化锰上单原子掺杂剂的调控

Tuning Single-Atom Dopants on Manganese Oxide for Selective Electrocatalytic Cyclooctene Epoxidation.

作者信息

Chung Minju, Jin Kyoungsuk, Zeng Joy S, Ton Thu N, Manthiram Karthish

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

Department of Chemistry, Korea University, Seoul 02841, Republic of Korea.

出版信息

J Am Chem Soc. 2022 Sep 28;144(38):17416-17422. doi: 10.1021/jacs.2c04711. Epub 2022 Sep 13.

Abstract

Selective and efficient electrocatalysts are imperative for the successful deployment of electrochemistry toward synthetic applications. In this study, we used galvanic replacement reactions to synthesize iridium-decorated manganese oxide nanoparticles, which showed a cyclooctene epoxidation partial current density of 10.5 ± 2.8 mA/cm and a Faradaic efficiency of 46 ± 4%. Results from operando X-ray absorption spectroscopy suggest that manganese leaching from the nanoparticles during galvanic replacement introduces lattice vacancies that make the nanoparticles more susceptible to metal oxidation and catalyst reconstruction under an applied anodic potential. This results in an increased presence of electrophilic oxygen atoms on the catalyst surface during reaction conditions, which may contribute to the enhanced electrocatalytic activity toward cyclooctene epoxidation.

摘要

对于电化学在合成应用中的成功部署而言,选择性和高效的电催化剂至关重要。在本研究中,我们利用化学置换反应合成了铱修饰的氧化锰纳米颗粒,其环辛烯环氧化的分电流密度为10.5±2.8 mA/cm,法拉第效率为46±4%。原位X射线吸收光谱的结果表明,在化学置换过程中纳米颗粒中的锰浸出会引入晶格空位,这使得纳米颗粒在施加阳极电位时更容易发生金属氧化和催化剂重构。这导致在反应条件下催化剂表面亲电氧原子的存在增加,这可能有助于提高对环辛烯环氧化的电催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6297/9523708/8025f5f805a4/ja2c04711_0002.jpg

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