2012.09-至今 南京理工大学 化学工程 硕博
2016.09-2020.06 南京理工大学 化学工程与工艺 本科
导师:张舒乐教授
研究方向:工业烟气脱硝
个人邮箱:scezmj@njust.edu.cn
已发表论文:
[1] Mingjia Zhang1, Meng F Y1, Shule Zhang*, Qin Zhong*.Sulfur-doping promoting peroxone reaction over TiO2 for highly effective NO oxidation at low temperature: Experimental and DFT studies, Chemical Engineering Journal 429 (2022) 132475, SCI一区 top, IF=16.7;
[2] Mingjia Zhang, Shule Zhang*, Qin Zhong*. Catalytic peroxone process for low-temperature denitration with enhanced Ti-OOH formation on P-TiO2: Experimental, DFT, and semi-in-situ UV–vis studies, Fuel 330 (2022) 125664, SCI一区 top, IF= 8.03;
[3] Ruonan Wang1, Mingjia Zhang1, Jie Ding*, Xu Wu*, Qin Zhong*. Self-Supporting Triphase Photocatalytic CO2 Reduction to CH3OH on Controllable Core−Shell Structure with Tunable Interfacial Wettability, ACS Nano 2023 17 (23), 24363-24373, SCI一区 top, IF=17.1;
[4] Mingjia Zhang, Shule Zhang*. Enhanced water resistance mechanism in Ag-Hollandite for catalytic ozone decomposition, Journal of Hazardous Materials 465 (2024) 133481, SCI一区 top, IF= 13.6;
[5] Mingjia Zhang, Shule Zhang*. Crystal facet engineering of K-OMS-2 for active site identification in catalytic ozone decomposition, Chemical Engineering Journal 490 (2024) 151741, SCI一区 top, IF=13.3;
[6] Mingjia Zhang, Shule Zhang*. Synthesis Ag-Hollandite by mild route for highly efficient ozone decomposition, Journal of Hazardous Materials 477 (2024) 135388, SCI一区 top, IF= 12.2.
[7] Bin Yang1, Mingjia Zhang1, Shule Zhang*, Qin Zhong*. Promotional effect of surface fluorine species on CeO2 catalyst for toluene oxidation, Molecular Catalysis 512 (2021) 111771, SCI二区, IF=5.08;
[8] Mingjia Zhang, Ting Li, Zhongyu Wang, Yuyan He, Minghao Shi, Shule Zhang, Qin Zhong. A Rational Design of Electron-Rich Active Sites Based on Heterostructure Engineering for Efficient Catalytic Ozone Decomposition, ACS EST Engg. 2025, XXXX, XXX, XXX-XXX, 10.1021/acsestengg.5c00181.
[9] Ruonan Wang#, Mingjia Zhang#, Jingjing Liu, Xu Wu, Shule Zhang, Qin Zhong, JianfengYao. Defect-phase engineered NiTi-TiO2 enabling near-unity selective photocatalytic CO2-to-methanol conversion. Nature Communications (2025) 16:7844, 10.1038/s41467-025-63179-7.
[10] Zhongyu Wang, Mingjia Zhang, Ting Li, Yuyan He, Shule Zhang, Qin Zhong. Effect of Facet on Oxygen Vacancy Properties in δ-MnO2 for Stable and Efficient Catalytic Ozone Decomposition. Environ. Sci. Technol. 2025, 59, 21355−21364