Synthesis of "Quasi-Ce-MOF" Electrocatalysts for Enhanced Urea Oxidation Reaction Performance

被引:99
作者
Cheng, Yan [1 ]
Xiao, Xiao [1 ]
Guo, Xiaowen [1 ]
Yao, Hang [1 ]
Pang, Huan [1 ]
机构
[1] Yangzhou Univ, Sch Chem & Chem Engn, Yangzhou 225009, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
metal-organic frameworks; quasi-MOFs; straw-bundle-like; Ce-MOF derivative; urea oxidation reaction; METAL-ORGANIC FRAMEWORKS; NANOPARTICLES; AU;
D O I
10.1021/acssuschemeng.0c01800
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Cerium-based metal-organic framework (Ce-MOF) materials are promising electrocatalysts, while the catalytic activity of Ce-MOFs is lacking due to their inherent disadvantages (poor conductivity), and further improvements are needed. Herein, we propose a method for synthesizing a "quasi-Ce-MOF" straw-bundle composite assembled from one-dimensional (1D) nanorods. This is a method in which the MOF is directly heat-treated with a nitrogen atmosphere, and controlled partial pyrolysis results in the formation of a "quasi-MOF". It is worth noting that the "quasi-MOF" material (Ce-MOF-350) calcined at 350 degrees C maintains the porous structure of the precursor while having more exposed active centers. Therefore, the catalytic activity of Ce-MOF-350 for the urea oxidation reaction (UOR) is greatly improved. This material also has good long-term stability because the 1D nanorods are closely connected. Through the reasonable calcination of Ce-MOF materials, this study provides a new strategy for improving the activity of electrocatalysts and developing high-efficiency electrocatalysts.
引用
收藏
页码:8675 / 8680
页数:6
相关论文
共 38 条
[1]   Urea electrolysis: direct hydrogen production from urine [J].
Boggs, Bryan K. ;
King, Rebecca L. ;
Botte, Gerardine G. .
CHEMICAL COMMUNICATIONS, 2009, (32) :4859-4861
[2]   SATELLITE STRUCTURE IN X-RAY PHOTOELECTRON-SPECTRA OF SOME BINARY AND MIXED OXIDES OF LANTHANUM AND CERIUM [J].
BURROUGHS, P ;
HAMNETT, A ;
ORCHARD, AF ;
THORNTON, G .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 1976, (17) :1686-1698
[3]   Optimal sizing and location based on economic parameters for an off-grid application of a hybrid system with photovoltaic, battery and diesel technology [J].
Cai, Wei ;
Li, Xing ;
Maleki, Akbar ;
Pourfayaz, Fathollah ;
Rosen, Marc A. ;
Nazari, Mohammad Alhuyi ;
Dieu Tien Bui .
ENERGY, 2020, 201
[4]   Size Fractionation of Two-Dimensional Sub-Nanometer Thin Manganese Dioxide Crystals towards Superior Urea Electrocatalytic Conversion [J].
Chen, Sheng ;
Duan, Jingjing ;
Vasileff, Anthony ;
Qiao, Shi Zhang .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (11) :3804-3808
[5]   Metal Organic Frameworks as Versatile Hosts of Au Nanoparticles in Heterogeneous Catalysis [J].
Dhakshinamoorthy, Amarajothi ;
Asiri, Abdullah M. ;
Garcia, Hermenegildo .
ACS CATALYSIS, 2017, 7 (04) :2896-2919
[6]   Partial deligandation of M/Ce-BTC nanorods (M = Au, Cu, au-cu) with "Quasi-MOF" structures towards improving catalytic activity and stability [J].
Fan, Longlong ;
Zhao, Feigang ;
Huang, Zhongliang ;
Chen, Bin ;
Zhou, Shu-Feng ;
Zhan, Guowu .
APPLIED CATALYSIS A-GENERAL, 2019, 572 :34-43
[7]  
Farha OK, 2010, NAT CHEM, V2, P944, DOI [10.1038/nchem.834, 10.1038/NCHEM.834]
[8]  
Horcajada P, 2010, NAT MATER, V9, P172, DOI [10.1038/NMAT2608, 10.1038/nmat2608, 10.1038/NMAT260B]
[9]   Metal-organic frameworks for catalysis: State of the art, challenges, and opportunities [J].
Li, Dandan ;
Xu, Hai-Qun ;
Jiao, Long ;
Jiang, Hai-Long .
ENERGYCHEM, 2019, 1 (01)
[10]   Porous metal-organic frameworks for gas storage and separation: Status and challenges [J].
Li, Hao ;
Li, Libo ;
Lin, Rui-Biao ;
Zhou, Wei ;
Zhang, Zhangjing ;
Xiang, Shengchang ;
Chen, Banglin .
ENERGYCHEM, 2019, 1 (01)