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在氮掺杂碳纳米片上对硒化镍与氧化铈进行界面工程用于高效甲醇和尿素电氧化

Interfacial engineering of nickel selenide with CeO on N-doped carbon nanosheets for efficient methanol and urea electro-oxidation.

作者信息

Yue Tingting, Shi Yue, Ji Yaxin, Jia Jingchun, Chang Ying, Chen Junxiang, Jia Meilin

机构信息

College of Chemistry and Environmental Science, Inner Mongolia Key Laboratory of Green Catalysis and Inner Mongolia Collaborative Innovation Center for Water Environment Safety, Inner Mongolia Normal University, China.

Key Laboratory of Design and Assembly of Functional Nanostructures, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, China; Fujian Provincial Key Laboratory of Nanomaterials, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, China.

出版信息

J Colloid Interface Sci. 2024 Jan;653(Pt B):1369-1378. doi: 10.1016/j.jcis.2023.09.101. Epub 2023 Sep 21.

Abstract

The design of low cost, high efficiency electrocatalysts for methanol oxidation reactions (MOR) and urea oxidation reactions (UOR) is a pressing need to address the energy crisis and water pollution. In the present work, we developed Cerium dioxide (CeO) and nickel selenide (NiSe) nanoparticles integrated into three-dimensional N-doped carbon nanosheets to be used as efficient and stable bifunctional electrocatalysts for MOR and UOR. By optimizing the selenization temperature, the CeO-modified NiSe obtained at selenization temperature of 550 °C (CeO-NiSe-550-NC) has the best MOR and UOR electrochemical performance. The CeO-NiSe-550-NC potential only requires 1.309 V (MOR) and 1.294 V (UOR) to reach 10 mA cm, respectively. The DFT study reveals that CeO-NiSe-550-NC has the best reaction path with the synergistic effect between CeO and NiSe. The outstanding catalytic performance of CeO-NiSe-550-NC may be due to the cointeraction between CeO and NiSe, allowing more defects that function as catalytic sites while promoting fast electron transfer in the N-doped carbon substrate.

摘要

设计低成本、高效率的用于甲醇氧化反应(MOR)和尿素氧化反应(UOR)的电催化剂,是解决能源危机和水污染的迫切需求。在本工作中,我们开发了集成到三维氮掺杂碳纳米片中的二氧化铈(CeO)和硒化镍(NiSe)纳米颗粒,用作MOR和UOR的高效稳定双功能电催化剂。通过优化硒化温度,在550℃硒化温度下获得的CeO修饰的NiSe(CeO-NiSe-550-NC)具有最佳的MOR和UOR电化学性能。CeO-NiSe-550-NC的电位分别仅需1.309 V(MOR)和1.294 V(UOR)即可达到10 mA cm。密度泛函理论(DFT)研究表明,CeO-NiSe-550-NC具有最佳反应路径,CeO和NiSe之间具有协同效应。CeO-NiSe-550-NC出色的催化性能可能归因于CeO和NiSe之间的相互作用,产生更多作为催化位点的缺陷,同时促进了氮掺杂碳基底中的快速电子转移。

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