Photocatalytic Co-Reduction of N2 and CO2 with CeO2 Catalyst for Urea Synthesis

被引:24
|
作者
Yang, Shuyi [1 ]
Zhang, Wensheng [1 ]
Pan, Guoliang [1 ]
Chen, Jiaying [1 ]
Deng, Jiayi [1 ]
Chen, Ke [1 ]
Xie, Xianglun [1 ]
Han, Dongxue [1 ,2 ]
Dai, Mengjiao [3 ,4 ]
Niu, Li [1 ,5 ]
机构
[1] Guangzhou Univ, Ctr Adv Analyt Sci, Sch Chem & Chem Engn, Guangzhou Key Lab Sensing Mat & Devices, Guangzhou 510006, Peoples R China
[2] Antidrug Technol Ctr Guangdong Prov, Guangdong Prov Key Lab Psychoact Subst Monitoring, Guangzhou 510230, Peoples R China
[3] Chinese Acad Sci, Changchun Inst Appl Chem, State Key Lab Electroanalyt Chem, Engn Lab Modern Analyt Tech, Changchun 130022, Peoples R China
[4] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[5] Sun Yat Sen Univ, Sch Chem Engn & Technol, Zhuhai 519082, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
C-N Coupling; CeO2; Nanorods; Oxygen Vacancy; Photocatalysis; Urea; OXYGEN VACANCIES; CARBON-DIOXIDE; SURFACE; NANOPARTICLES; MORPHOLOGY; ELECTRIDE; NANORODS;
D O I
10.1002/anie.202312076
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The effective conversion of carbon dioxide (CO2) and nitrogen (N-2) into urea by photocatalytic reaction under mild conditions is considered to be a more environmentally friendly and promising alternative strategies. However, the weak adsorption and activation ability of inert gas on photocatalysts has become the main challenge that hinder the advancement of this technique. Herein, we have successfully established mesoporous CeO2-x nanorods with adjustable oxygen vacancy concentration by heat treatment in Ar/H-2 (90%: 10%) atmosphere, enhancing the targeted adsorption and activation of N-2 and CO2 by introducing oxygen vacancies. Particularly, CeO2-500 (CeO2 nanorods heated treatment at 500 degrees C) revealed high photocatalytic activity toward the C-N coupling reaction for urea synthesis with a remarkable urea yield rate of 15.5 mu g/h. Besides, both aberration corrected transmission electron microscopy (AC-TEM) and Fourier transform infrared (FT-IR) spectroscopy were used to research the atomic surface structure of CeO2-500 at high resolution and to monitor the key intermediate precursors generated. The reaction mechanism of photocatalytic C N coupling was studied in detail by combining Density Functional Theory (DFT) with specific experiments. We hope this work provides important inspiration and guiding significance towards highly efficient photocatalytic synthesis of urea.
引用
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页数:11
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