
朱奥男
博士,讲师
办公室:化学楼502
邮箱:aonanzhu@imu.edu.cn
教育背景
2013-2017:吉林师范大学大学物理学院读本科,获理学学士学位
2017-2020:吉林师范大学物理学院读硕士,获理学硕士学位
2020-2024:南开大学化学学院读博士,获理学博士学位
工作经历
2025至今:内蒙古大学, 化学化工学院, 讲师
荣誉与奖励
2015年,吉林省挑战杯二等奖
2015年,国家励志奖学金
2019年,研究生国家奖学金
2024年,天津市自然科学二等奖
研究领域
1. 能源转化材料创制
2. 表界面化学分析(SERS)
3. 等离激元纳米材料
教学
主讲化学化工学院本科《材料分析测试方法》、《功能材料》课程
研究项目
内蒙古大学2025年引进高层次人才科研启动金,主持。
代表性成果
发表SCI期刊学术论文33篇,h指数14,其中以第一作者身份在Journal of the American Chemical Society, ACS Applied Materials & Interfaces 等国际权威期刊发表研究性论文6篇。
论文:
1. Zhu Aonan, Yutao Cao, Ning Zhao, Yongcheng Jin, Yonglong Li, Ling Yang, Cancan Zhang, Yangxuan Gao, Zhao Zhang, Yuying Zhang, and Wei Xie*, Geminal Synergy in Pt-Co Dual-Atom Catalysts: From Synthesis to Photocatalytic Hydrogen Production, Journal of the American Chemical Society, 2024, 146, 33002-33011. (IF: 14.5)
2. Zhu Aonan, Shu Niu, Ning Zhao, Zhao Zhang, and Wei Xie*, Modulating Copper Ladder Spacing in Copper Phenylacetylide for Enhanced Photocatalysis via Substituent Control, ACS Applied Materials & Interfaces, 2024, 16, 50870-50878. (IF: 8.5)
3. Zhu Aonan, Shu Niu, Cancan Zhang, Yonglong Li, Aoxuan Du, and Wei Xie*, Crowding-Out Effect in Synergistic C−C Coupling on PdNi Alloy Nanoparticles Studied by Surface-Enhanced Raman Spectroscopy, Journal of Physical Chemistry C, 2023, 127, 21578-21584. (IF: 3.3)
4. Zhu Aonan, Xiaoyu Zhao, Mingyu Cheng, Lei Chen, Yaxin Wang*, Xiaolong Zhang, Yongjun Zhang* and Xuefeng Zhang, Nanohoneycomb Surface-Enhanced Raman Spectroscopy-Active Chip for the Determination of a Biomarker of Hepatocellular Carcinoma, ACS Applied Materials & Interfaces, 2019, 11, 44617−44623. (IF: 8.758)
5. Zhu Aonan, Renxian Gao, Xiaoyu Zhao, Fan Zhang, Xinyuan Zhang, Jinghai Yang, Yongjun Zhang*, Lei Chen* and Yaxin Wang*, Site-selective growth of Ag nanoparticles controlled by localized surface plasmon resonance of nanobowl arrays, Nanoscale, 2019, 11, 6576-6583. (IF:6.895, Front Cover)
6. Zhu Aonan, Fan Zhang, Renxian Gao, Xiaoyu Zhao, Lei Chen, Yongjun Zhang⁎, Xiaolong Zhang⁎, Yaxin Wang, Increasing Polarization-dependent SERS Effects by Optimizing the Axial Symmetry of Plasmonic Nanostructures, Applied Surface Science, 2019, 494, 87-93. (IF: 6.182)