黄驰
个人信息Personal information
- 博士生导师
- 硕士生导师
- 教师拼音名称:Huang Chi
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- 所在单位:化学与分子科学学院
- 职务:教授
- 学历:研究生毕业
- 办公地点:化学与分子科学学院
- 性别:男
- 联系方式:+86-27-68754226
- 职称:教授
- 在职信息:在职
- 毕业院校:武汉大学
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论文成果
Biochar-based single-atom cobalt catalyst for efficient thermal decomposition of ammonium perchlorate: Preparation, performance and mechanism
发表时间:2026-07-02 点击次数:
影响因子:5.6
DOI码:10.3390/ijms27135964
所属单位:College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China
发表刊物:International Journal of Molecular Sciences
关键字:single-atom catalyst; biomass carbon; cobalt-based catalyst; thermal decomposition; ammonium perchlorate
摘要:The thermal decomposition performance of ammonium perchlorate (AP) is a key factor in regulating the combustion of composite solid propellants, and its catalytic decomposition process is considered a typical multiphase catalytic process. The exposure of catalytic centers during multiphase catalysis is a key factor affecting catalytic performance. In response to the problem of low atomic utilization efficiency of traditional metal oxide catalysts, this study successfully prepared nitrogen-doped carbon-supported single-atom cobalt catalyst (SACo-PC-X) using the “zinc volatilization pore formation and nitrogen anchoring” method with inexpensive biomass as the precursor. Aberration-corrected transmission electron microscopy, together with XPS and XRD analyses, suggests that Co species are predominantly stabilized in an atomically dispersed Co-Nx configuration. This catalyst exhibits excellent catalytic performance for the thermal decomposition of AP, significantly reducing its high-temperature decomposition temperature from 433.5 °C to 322.7 °C (The cobalt content in the system is less than 0.2%). Gas studies have shown that Co-Nx sites efficiently accelerate the oxidation process of NH3 by promoting electron transfer, resulting in a significant increase in the proportion of N2O gas. This work not only provides an efficient and stable new catalyst for AP decomposition, but also offers new ideas for designing energetic material decomposition catalysts at the atomic level.
合写作者:Zhang Bin,Zhou Yuming,Li Junyu,Zheng Zeyu,Huang Yanfen
论文类型:期刊论文
通讯作者:Zhang Yifu*,Huang Chi*
学科门类:理学
文献类型:J
卷号:27
期号:13
页面范围:5964
是否译文:否
发表时间:2026-07-02
收录刊物:SCI
