Li zequanreceivedhis Ph.D degree from Chongqing university.From August 2012 to July 2013, he was a Visiting Scientist inUniversity of Washington.Associate Professorli’s research interests focus on molten salt electrochemistry, material preparation and properties, environment. |
Email:lzq0313@cqu.edu.cn
molten salt electrochemistry, material preparation and properties, environment
17. Jiabao Gu , Chaogang Ban , Jiazhi Meng , Qianwen Li , Xuanyu Long , Xiaohan Zhou , Nan Liu,Zequan Li.Construction of dual Z-scheme UNiMOF/BiVO4/S-C3N4 photocatalyst for visible-light photocatalytic tetracycline degradation and Cr(VI) reduction[J]. Applied Surface Science,2023,611:155575
16.Xuanyu Long, Jiazhi Meng, Jiabao Gu, Lanqing Ling, Qianwen Li, Nan Liu, Kaiwen Wang andZequan Li. Interfacial engineering of NiFeP/NiFe-LDH heterojunction for eEfficient overall water Splitting [J]. Chinese Journal of Structural Chemistry,2022, 41:2204046-2204053
15.Jiabao Gu , Qianwen Li , Xuanyu Long , Xiaohan Zhou , Nan Liu ,Zequan Li. Fabrication of magnetic dual Z-scheme heterojunction materials for efficient photocatalytic performance: The study of ternary novel MIL-88A (Fe)/BiOBr/SrFe12O19nanocomposite [J] Separation and Purification Technology ,2022 ,(289): 120778
14.Qianwen Li,Limei Li,Xuanyu Long,Yu Tu,Lanqing Ling,Jiabao Gu,Liwei Hou,Yi Xu,Nan Liu,Zequan Li. Rational design of MIL-88A(Fe)/Bi2WO6heterojunctions as an efficient photocatalyst for organic pollutant degradation under visible light irradiation[J]. Optical Materials. 2021,(118):111260
13.Ling Lanqing,Tu Yu,Long Xuanyu,Li Qianwen,Gu Jiabao,Liu Nan,Li Zequan.The one-step synthesis of multiphase SnS2modified by NH2-MIL-125(Ti) with effective photocatalytic performance for Rhodamine B under visible light[J]. Optical Materials. 2021,(111):110564
12.Dan Linyang, Liu Nan,Li Zequan, Li Xuemin.Study on Diffusion Dynamics of O2-in Molten CaCl2for Molten Salt Electrolysis [J]. Rare Metal Materials and Engineering. 2021,50(7):2409-2414
11.Tu Yu,Ling Lanqing,Li Qianwen,Long Xuanyu,Liu Nan,Li Zequan.Greatly enhanced photocatalytic activity over Bi2WO6by MIL-53 (Fe) modification[J]. Optical Materials. 2020,(110):110500
10.Dan Linyang, Liu Nan,Li Zequan, Li Xuemin.Study on Conductivity Mechanism of TiO2with Oxygen Vacancies Prepared by FFC Process and Cathode Structures[J]. Rare Metal Materials and Engineering. 2020,49(8):2773-2778
9.Li Zequan, Dan Linyang, Li Xuemin, Liu Nan, Bai Chenguang, Hu Meilong.Gas of Molten Salt Electrolysis and Its Impact on Electrodeoxidation[J]. Rare Metal Materials and Engineering. 2017,46(12):3767-3772
8.Li Zequan,Hu Ling,Lu Jiao,Liu Nan,Han Mei.Progress in Mutual Influences between Substances during Preparation of Alloy via Molten Salt Electro-Deoxidation[J].Chinese Journal of Rare Metals. 2016,40(11):1169-1176
7.Zequan Li,Jing Guo,Rong Hu,Liyue Ru and Haihua Wang. Carbon Anode for the Formation of Carbon Monoxide and its Impact on the Molten-salt Electrolysis[J]. Asian Journal of Chemistry. 2014,26(9): 2565-2570
6.Liyue Ru,Zequan Li, Chenguang Bai, Na Zhang, Haihua Wang. Effect of CaTiO3Crystal Structure and Cathodic Morphological Structure on the Electrolysis[J]. Asian Journal of Chemistry. 2013, 25(4): 1814-1818
5.Zequan Li, Liyue Ru, Chenguang Bai, Na Zhang, Haihua Wang. Effect of sintering temperature on the electrolysis of TiO2[J]. International Journal of Minerals Metallurgy and Materials. 2012, 19(7): 636-641
4.Li Zequan,Hu Rong,Guo Jing,Ru Li-yue,Wang Hai-hua.Effect on the formation of oxygen vacancy of TiO2. Materials Science&Technology. 2012,20 (2):80-85
3.Zequan Li,Na Zhang, Chenguang Bai,Dongmei Jian,Liyue Ru and Haihua Wang.Influence of Sintering Temperatures on Structure and Electrical Conductivity of TiO2Cathode[J]. Asian Journal of Chemistry. 2011,23(11):4932-4938
2. Zequan Li,Liyue Ru, Chenguang Bai,Na Zhang and Haihua Wang. Characterization study on specific surface and absorption of CaTiO3[J].Functional materials. 2011,42(3):577-579
1.Zequan Li,Liyue Ru, Chenguang Bai,Chen Xiaoliang,Tao Changyuan.Study on Formation and Transportation Process of O2-in TiO2Electrode[J]. Rare Metal Materials and Engineering. 2010,39(3)473-476