纳米颗粒
臭氧
电化学
锌
电解
材料科学
Atom(片上系统)
化学工程
纳米技术
化学
电极
冶金
物理化学
有机化学
电解质
工程类
嵌入式系统
计算机科学
作者
Bowen Yuan,Zihao Yao,Chenlong Qiu,Haiyang Zheng,Yi‐Long Yan,Qiaoqiao Zhang,Xiang Sun,Yu Gu,Xing Zhong,Jianguo Wang
标识
DOI:10.1016/j.jechem.2020.03.066
摘要
Electrochemical ozone production (EOP) via water electrolysis represents an attractive method for the generation of high-purity O3. Herein, the X-PtZn/Zn-N-C electrocatalysts show a strong structural sensitive behavior depends on the size of the PtZn nanoparticles and their EOP activity exhibits a volcano-type dependence for the O3 performance in neutral media. The 7.7-PtZn/Zn-N-C exhibits EOP current efficiency of 4.2%, and shows the prominent performance in the production of gaseous O3 with a value of 1647 ppb at 30 min, which is almost 4-fold compared to 2.2-PtZn/Zn-N-C. Based on the experiments and theoretical calculations, the performance of the EOP process was determined by the nanoparticle size-effect and the synergistic effect between the PtZn nanoparticles and atomically dispersed Zn-N-C. Furthermore, the five-membered cyclic structure of O3 can be stabilized between the PtZn nanoparticle and the Zn-N-C support, indicating that O3 is produced at the interface.
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