
李晓霞
博士,教授(三级),硕士研究生导师。
主要从事能源与环境催化材料,资源循环与高值化利用,包括新型高效催化剂的开发、催化氧化降解有机污染物,废旧塑料及纺织品高效利用,生物质纤维的功能化应用。以第一或通讯作者发表SCI论文60余篇,主持国家自然科学基金面上及青年项目、湖北省自然科学基金、湖北省教育厅科学技术项目、中国博士后科学基金面上项目及中国博士后科学基金特别资助项目,主持多项企业项目。
学习与工作经历:
2000.09-2004.07 四川大学材料科学与工程公司,获学士学位
2004.09-2009.07 中国科公司大连化学物理研究所,获博士学位
2009.08-2011.08 武汉大学英国上市公司官网365,博士后
20011.9- 至今 英国上市公司官网365英国上市公司官网365,教授
实验室与联系方式:
理工楼06-402,邮箱:lixxwh@163.com
主持科研项目:
1. 国家自然科学基金面上项目,51979542, 2020.01-2024.12
2. 湖北省教育厅科学技术研究项目,D20181706,2019.01-202.12
3. 国家自然科学基金青年项目,21304072, 2014.01-2016.12
4. 湖北省自然科学基金,2014CFB757,2015.01-2016.12
5. 湖北省教育厅科学技术研究项目,Q20121702,2012.01-2013.1
代表性论文:
[1] Shangyi Zhao, Jing Li, Yanchanjuan Yang, Shuaiqi Zhao, Aihua Xu, Xiuying Liu, Xiaoxia Li*. Sulfite activation by ultralow-dose Mn(III) porphyrin for efficient degradation of sulfadiazine via superoxide radical and singlet oxygen. Chemical Engineering Science, 2026, 329, 123811.
[2] Jing Li, Yanchanjuan Yang, Shangyi Zhao, Xiaochuan Zhou, Xiuying Liu, Shuaiqi Zhao, Aihua Xu, Xiaoxia Li*. Oxygen-coupled relay activation from sulfite to peroxymonosulfate with manganese(II)-phenanthroline complex for efficient degradation of sulfadiazine. Separation and Purification Technology, 2026, 387, 136772.
[3] Can Peng, Zhengyan Yu, Fengjiao Zhou, Jiajin Lin*, Aihua Xu, Xiuying Liu, Shuaiqi Zhao*, Xiaoxia Li*. Universal quenching-reduction engineering of controllable Cu0/Cu+ active sites in 2D heterojunctions for enhanced Fenton-like catalysis. Journal of Colloid and Interface Science, 2026, 710, 139997.
[4] Mengru Zhang, Yanan Chong, Aimal Khan, Wei Li, Aihua Xu, Huangzhao Wei, Xiuying Liu, Shuaiqi Zhao*, Xiaoxia Li*. Synthesis of amorphous-crystalline transition metal oxides via an Al2O3-assisted amorphization strategy to promote fenton-like catalytic activity. Fuel, 2026, 405, 136662.
[5] Aimal Khan*, Ubaid Ullah, Liansong Gao, Istiak Ahmed, Shuaiqi Zhao, Xiuying Liu, Huangzhao Wei, Aihua Xu, Xiaoxia Li*. Mn2O3 catalyst for efficient sulfite activation for bisphenol A degradation in aqueous media via singlet oxygen generation. Journal of Environmental Chemical Engineering 2025, 13, 116955.
[6] Wenpei Zhao, Rongrong Hu, Jing Li, Aimal Khan, Shuaiqi Zhao, Huangzhao Wei, Aihua Xu, Xiaoxia Li*. Realizing high utilization of sulfite activation via nitrilotriacetic acid complexed Mn(II) for rapid degradation of organic contaminants. Chemical Engineering Journal, 2025, 507, 160484.
[7] Ming Chen, Siyuan Zhuo, Wenda Zhao, Aimal Khan, Runshi Chen, Wei Li, Aihua Xu, Xiuying Liu, Shuaiqi Zhao*, Xiaoxia Li*. Electron structure regulation of active sites to optimize peroxymonosulfate activation over Lewis acid metal-doped ZnCo2O4 catalysts. Applied Surface Science, 2025, 679, 161161.
[8] Siyuan Zhuo, Habib Ullah, Xiong Zhou, Zhengyuan Liu, Shuaiqi Zhao, Aihua Xu, Xiaoxia Li*, Aimal Khan*. Role of –OH groups on Mn3O4 heterogeneous catalyst surfaces in peroxymonosulfate activation: Degradation of levofloxacin via radical/ nonradical pathways. Applied Surface Science, 2025, 685, 162007.
[9] Mengru Zhang , Jiajin Lin, Wenda Zhao, Aimal Khan, Wei Li, Aihua Xu, Huangzhao Wei, Xiuying Liu, Shuaiqi Zhao*, Xiaoxia Li*. Spin state regulated by asymmetric orbital hybridization in Ni-Fe2O3 to promote fenton-like catalytic activity. Separation and Purification Technology, 2025, 357, 130055.
[10] Wenpei Zhao, Rongrong Hu, Runshi Chen, Shuaiqi Zhao, Aimal Khan, Huangzhao Wei, Aihua Xu, Xiaoxia Li*. Peroxymonosulfate promoted dioxygen activation with Mn (II)-nitrilotriacetic acid complexes for sulfadiazine degradation. Journal of Hazardous Materials, 2024, 4480, 135915.
[11] Qiaohui Gao, Habib Ullah, Zidong Ming, Shuaiqi Zhao, Aihua Xu, Xiaoxia Li*, Aimal Khan*. Synergistic degradation of p-nitrophenol using peroxymonosulfate activated with a bimetallic Mn3O4–Cu2O catalyst: Investigation of strong interactions between metal oxides. Journal of Environmental Chemical Engineering 2024, 12, 113958.
[12] Shuaiqi Zhao, Jiajin Lin, Wenqiang Gong, Aihua Xu, Xiaoxia Li*, Yongcai Qiu*. Modulating electronic Metal–Support interactions of Pt-CuO/CeO2 catalyst via quenching to optimize catalytic activity. Separation and Purification Technology, 2024, 332, 125864.