卢明莉
卢明莉,博士,材料分析测试专任教师,主要从事锂电池材料和新型高效催化材料的设计开发方及其在环境催化和能源化工等领域的应用研究。已发表科研论文20余篇,主要发表在Advanced Functional Materials,Journal of Colloid and Interface Science, Journal of Alloys and Compounds, Applied Catalysis B: Environmental等刊物上,申请国家发明专利并授权2件。
教育经历
2015–2018,华南师范大学,硕士(物理化学专业)
2018–2022,华南理工大学,博士(化学工程专业)
工作经历
2023–2026,佛山大学特聘青年研究员
2026–至今,广州职业技术大学,前沿材料学院专任教师
科研特长
本人主要从事锂电池材料和新型高效催化材料的设计开发及其在环境催化和能源化工等领域的应用研究。主持横向项目一项,参与广东省基础与应用基础研究区域联合重点项目。已在化工、能源领域期刊上(合作)发表论文20+篇,其中以第一作者/第一通讯作者发表论文9篇,授权专利2项。
代表性论文
[1] Lu Mingli*, Sheng Jie, Lu Xia*, et al. A Robust Li+‐rich protective layer for high‐performance dendrite‐free Li metal batteries. Advanced Functional Materials, 2025: e12040.
[2] Zeng Xueyi, Lu Mingli*, Ma Zhen*, Nan Junmin*, et al. 2-Acetyl-5-methylthiophene (2-AMT) constructs sulfur-rich interphase for the long-cycling performance of high‑nickel lithium-ion battery at elevated temperature. Chemical Engineering Journal, 2025, 517: 164404.
[3] Li Haijia, Lu Mingli*, Ma Zhen*, Nan Junmin*, et al. Bis(phenylsulfonyl)methane (BPSM) as multifunctional electrolyte additive constructing a stable interface for LiNi0.8Co0.1Mn0.1O2/graphite batteries at low temperatures. Chemistry-A European Journal, 2025, 31: e202501749.
[4] Lu Mingli, Xiao Xinyan*, Xiao Yu, et al. In situ fabrication of type-II BiOIO3/Bi-MOF heterostructures with enhanced photocatalytic activity. Journal of Photochemistry and Photobiology, A: Chemistry, 2023, 444: 114957.
[5] Lu Mingli, Xiao Xinyan*, Xiao Yu, et al. One-pot hydrothermal fabrication of 2D/2D BiOIO3/BiOBr Z-scheme heterostructure with enhanced photocatalytic activity. Journal of Colloid and Interface Science, 2022, 625: 664-679.
[6] Lu Mingli, Xiao Xinyan*, Zeng Gongchang. Bi2S3 nanorods and BiOI nanosheets co-modified BiOIO3 nanosheets: An efficient vis-light response photocatalysts for RhB degradation. Journal of Alloys and Compounds, 2021, 885: 160996.
[7] Lu Mingli, Xiao Xinyan*, Wang Yi, et al. Construction of novel BiOIO3/MoS2 2D/2D heterostructures with enhanced photocatalytic activity. Journal of Alloys and Compounds, 2020, 831: 154789.
[8] Xiao Xin*, Lu Mingli, Nan Junmin, et al. Rapid microwave synthesis of I-doped Bi4O5Br2 with significantly enhanced visible-light photocatalysis for degradation of multiple parabens. Applied Catalysis B: Environmental, 2017, 218: 398-408.
[9] 卢明莉,肖信*,张玲,等。碘掺杂Bi4O5Br2可见光催化降解2,4-二羟基苯甲酸甲酯,华南师范大学学报(自然科学版), 2019,51(01):22-27.
产业服务
技术开发:受某汽车研究院委托进行老化机理探究。
联系方式:1280269881@qq.com

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