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
- 所属院系:化学与分子科学学院
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论文成果
In-situ growth of bimetallic ZnCo-ZIF-67 on carbon fibers as high-efficiency catalyst for enhancing thermal decomposition of ammonium perchlorate
发表时间:2026-08-09 点击次数:
DOI码:10.3390/molecules31162767
发表刊物:Molecules
关键字:in-situ growth; bimetallic catalyst; combustion; carbon fibers; ammonium perchlorate
摘要:Due to its abundant active sites, the bimetallic zeolite imidazole framework ZnCo-ZIF-67 exhibits excellent catalytic performance on the key oxidant ammonium perchlorate in composite solid propellants. In addition, carbon fiber has been proven to promote the combustion of propellants due to its high thermal conductivity efficiency. In order to integrate the advantages of both, this study designed and prepared a novel composite catalyst, ZnCo-ZIF-67/CF, by a co-precipitation method. The thermal decomposition test demonstrated that the ZnCo-ZIF-67/CF composite exhibited significant catalytic activity. When the addition amount was 5 wt%, the high-temperature decomposition peak temperature of AP decreased significantly from 424.3 °C to 337.2 °C, and the combustion process was also significantly accelerated. Furthermore, analysis of the products of thermal decomposition gases revealed a significant increase in the proportion of N2O in the catalyzed products to 55.7%, whilst the proportion of high oxidation state nitrogen-containing oxides such as NO2 and NOCl decreased. This finding suggests that the highly dispersed metal active sites in ZnCo-ZIF-67/CF synergistically promote the decomposition reaction pathway of AP, leading to enhanced N2O generation. This study proposes a novel approach for the development of efficient and stable AP decomposition catalysts, which has positive significance for the regulation of the combustion performance of propellants.
合写作者:Lu Zhican,Zeng Qihui,Wang Fang,Yuan Bo,Zheng Zeyu,Zhang Yifu
论文类型:期刊论文
通讯作者:Tang Xiaolin,Huang Chi
学科门类:理学
文献类型:J
卷号:31
期号:16
页面范围:2767
是否译文:否
发表时间:2026-08-09
收录刊物:SCI
