刘中敏

作者: 时间:2019-05-09 点击数:


教师简介

姓名:刘中敏   性别:女

出生年月:198910 籍贯:山东德州宁津

职称:讲师   职务:无

毕业院校:天津大学、吉林化工学院      学位:硕博士、学士

电子邮件:liuzhongmin666@163.com

通信地址:德州市德城区大学西路566号(253023)德州学院化学化工学院

讲授过的课程:

《化工专业英语》、《分析化学》

研究方向:金属有机骨架材料及其衍生物通过吸附/光催化法去除水体中重金属离子和染料

代表性文章:

[1] Zhongmin Liu, Jitao Chen, Yongchuan Wu, Yaru Li, Jingyu Zhao and Ping Na*, Synthesis of magnetic orderly mesoporous α-Fe2O3 nanocluster derived from MIL-100(Fe) for rapid and efficient arsenic(III,V) removal, Journal of Hazardous Materials, 343 (2018) 304. (一区TopIF:6.06)

[2] Zhongmin Liu, Yongchuan Wu, Jitao Chen, Yaru Li, Jingyu Zhao, Kaihua Gao and Ping Na*, Effective elimination of As(III) via simultaneous photocatalytic oxidation and adsorption by a bifunctional cake-like TiO2 derived from MIL-125(Ti), Catalyst Science&Technology, 8 (2018) 1936. (二区,IF:5.77)

[3] Zhongmin Liu, Songhai Wu, Shaoyi Jia, Fengxiang Qin, Shimin Zhou, Haitao Ren, Ping Na and Yong Liu*, Novel hematite nanorods and magnetite nanoparticles prepared from MIL-100(Fe) template for the removal of As(V), Materials Letters, 132 (2014) 8. (二区TopIF:2.49)

[4] Kaihua Gao, Jitao Chen, Zhongmin Liu*, Yaru Li, Yongchuan Wu, Jingyu Zhao, Ping Na*, Intensified redox co-conversion of As(III) and Cr(VI) with MIL-125(Ti)-derived COOH functionalized TiO2: Performance and mechanism, Chemical Engineering Journal, 360 (2019) 1223. (一区TopIF:6.09)

[5] Zhongmin Liu, Kaihua Gao and Ping Na*, Efficient and rapid removal of arsenic from aqueous solution by cylinder-shaped micorporous metal-organic framework MIL-125(Ti), Summitted to Chemical Engineering Journal.

[6] Yaru Li, Zhongmin Liu, Yongchuan Wu, Jitao Chen, Jingyu Zhao, Fengmin Jin and Ping Na*, Carbon dots-TiO2 nanosheets composites for photoreduction of Cr(VI) under sunlight illumination: favorable role of carbon dots, Applied Catalysis B: Environmental, 224 (2018) 508. (一区TopIF:9.44)

[7] Jitao Chen, Zhongmin Liu, Yongchuan Wu, Yaru Li, Jingyu Zhao, Xixi Zhu and Ping Na*, Sodium hypophosphite induced a simultaneous P doping and hollowing process of TiO2 spherical nanostructures with enhanced photocatalytic activity, Chemical Communications, 54 (2018) 1972. (一区TopIF:6.32)

[8] Yongchuan Wu, Zhongmin Liu, Jitao Chen, Xiaojiao Cai and PingNa*, Hydrothermal fabrication of hyacinth flower-like WS2 nanorods and their photocatalytic properties, Materials Letters, 189 (2017) 282. (二区TopIF:2.57)

[9] Yongchuan Wu , Zhongmin Liu, Yaru Li, Jitao Chen, Xixi Zhu, Ping Na*, WS2 nanodots-modified TiO2 nanotubes to enhance visible-light photocatalytic activity, Materials Letters 240 (2019) 47. (三区IF:2.57)

[10] Yongchuan Wu, Zhongmin Liu, Yaru Li, Jitao Chen, Xixi Zhu, Ping Na*, Construction of 2D-2D TiO2 nanosheet/layered WS2 heterojunctions with enhanced visible-light-responsive photocatalytic activity, Chinese Journal of Catalysis 40 (2019) 60. (二区IF:2.99)

[11] Yanan Li, Zhongmin Liu, Yaru Li, Yongchuan Wu, Jitao Chen, Yanjun Liu, Ping Na*, One-step hydrothermal synthesis of Bi2S3-TiO2-RGO composites with enhanced visible light photocatalytic activities, Nano, Accepted. (四区,IF:1.03)

[12] Peng Wang, Yaru Li, Zhongmin Liu, Jitao Chen, Yongchuan Wu, Meng Guo and Ping Na*, In-situ deposition of Ag3PO4 on TiO2 nanosheets dominated by (001) facets for enhanced photocatalytic activities and recyclability, Ceramics International, 43 (2017) 11588. (二区TopIF:2.99)

[13] Shimin Zhou, Yuan Li, Jitao Chen, Zhongmin Liu, Zhaohui Wang and Ping Na*, Enhanced Cr(VI) removal from aqueous solutions using Ni/Fe bimetallic nanoparticles: characterization, kinetics and mechanism, RSC Advances, 4 (2014) 50699. (区,IF:3.84)

[14] Xueliang An, Fugen Huang, Haitao Ren, Yanfang Wang, Yao Chen, Zhongmin Liu, Hongwei Zhang and Xu Han*, Oxidative dissolution of amorphous FeS and speciation of secondary Fe minerals: Effects of pH and As(III) concentration, Chemical Geology, 462 (2017) 44. (二区TopIF:3.35)

[15] Hai-Tao Ren*, Zhao-Yang Ji, Song-Hai Wu, Xu Han, Zhong-Min Liu, Shao-Yi Jia, Photoreductive dissolution of schwertmannite induced by oxalate and the mobilization of adsorbed As(V), Chemosphe208 (2018) 294. (二区TopIF:4.11)


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