辽宁省先进清洁能源材料化学工程实验室
 

代表性论文

1. Jian Wang, Panpan Su, Jing Zhang*, Fangfang Wang, Yali Chen, Hao Liu*, Jian Liu*. Formation of Yolk-shell Structured NiO Nanospheres with Enhanced Lithium Storage Capacity. Materials Chemistry Frontiers (Mater. Chem. Front.), 2019, 3: 1619-1625.

2. Dongxu Liu, Jing Zhang*, Chun Li, Xun Zhang, Xuebing Chen, Fangfang Wang, Ming Shi, Rengui Li*, Can Li. In-situ fabrication of atomic charge transferring path for constructing heterojunction photocatalysts with hierarchical structure. Applied Catalysis B: Environmental (Appl. Catal. B-Environ.), 2019, 248: 459-465.

3. Yu Bai, Yuee Zhou§, Jing Zhang*, Xuebing Chen, Yonghui Zhang, Jifa Liu, Jian Wang, Fangfang Wang, Changdong Chen, Chun Li, Rengui Li*, Can Li. Homophase junction for promoting spatial charge separation in photocatalytic water splitting. ACS Catalysis (ACS Catal.), 2019, 9(4): 3242-3252.

4. Jing Zhang*, Xuebing Chen, Yu Bai, Chun Li, Ying Gao, Rengui Li*, Can Li. Boosting photocatalyticwater splitting by tuning built-in electric field at phase junction. Journal of Materials Chemistry A (J. Mater. Chem. A), 2019, 7, 10264-10272.

5. Mingliang Kang, Xiang Wang, Jing Zhang*, Yao Lu, Xuebing Chen, Lina Yang, Fangfang Wang. Boosting the photocatalytic oxidative desulfurization of dibenzothiophene by decoration of MWO4 (M=Cu, Zn, Ni) on WO3. Journal of Environmental Chemical Engineering (J. Environ. Chem. Eng.), 2019, 7(1): 102809-102818.

6. Yao Lu, Jing Zhang*, Fangfang Wang, Xuebing Chen, Zhaochi Feng, Can Li. K2SO4-assisted hexagonal/monoclinic WO3 phase junction for efficient photocatalytic degradation of RhB. ACS Applied Energy Materials (ACS Appl. Energy Mater.), 2018, 1(5): 2067-2077.

7. Yu Bai, Kuan Li, Xuebing Chen, Jing Zhang*. Controllable synthesis of mixed-phase TiO2 with small anatase and rutile particle and its enhanced photocatalytic activity. China Petroleum Processing & Petrochemical Technology (China Pet. Process. Pe.), 2018, 20(1): 37-43.

8. Jiangfei Wang, Jing Zhang*, Zhimeng Wang. Controllable synthesis and photocatalytic mechanism of different morphology Bi2WO6. Journal of Synthetic Crystals (人工晶体学报), 2018, 47(7): 1417-1423. 

9. Chundong Song, Xiang Wang, Jing Zhang*, Can Li. Enhanced performance of direct Z-scheme CuS-WO3 system towards photocatalytic decomposition of organic pollutants under visible light. Applied Surface Science (Appl. Surf. Sci.), 2017, 425: 788-795. 

10. Shuai Li, Jing Zhang*, Xuebing Chen, Zhaochi Feng, Can Li. Effect of surface loading and bulk doping of La3+ on the thermal stability and photocatalytic activity of Bi2O2CO3. Materials Research Bulletin (Mater. Res. Bull.), 2017, 94: 127-133.

11. Kuan Li, Jing Zhang*, Zhaochi Feng, Can Li. Preparation and stabilization of γ-Bi2O3 photocatalyst by adding surfactant and its photocatalytic performance. Materials Research Express (Mater. Res. Express), 2017, 4(6): 056902-065907.

12. Chundong Song, Jing Zhang*, Ying Gao, Fangfang Wang. Direct Z-scheme CuS-WO3 photocatalysts based on an element-reaction route and their photocatalytic activity. Acta Physico-Chimica Sinica (Acta Phys. Chim. Sin. 物理化学学报), 2017, 33(9): 1891-1897. 

13. Jing Zhang, Anirban Das, Rajeev S. Assary, Larry A. Curtiss*, Eric Weitz*. A combined experimental and computational study of the mechanism of fructose dehydration to 5-hydroxymethylfurfural in dimethylsulfoxide using Amberlyst 70, PO43-/niobic acid, or sulfuric acid catalysts. Applied Catalysis B: Environmental (Appl. Catal. B-Environ.), 2016, 181: 874-887. 

14. Yuanyuan Lu, Yangyang Zhang, Jing Zhang*, Yao Shi, Zhi Li, Zhaochi Feng, Can Li. In situ loading of CuS nanoflowers on rutile TiO2 surface and their improved photocatalytic performance. Applied Surface Science (Appl. Surf. Sci.), 2016, 370: 312-319.

15. Guo Liu, Shuai Li, Yuanyuan Lu, Jing Zhang*, Zhaochi Feng, Can Li. Controllable synthesis of α-Bi2O3 and γ-Bi2O3 with high photocatalytic activity by α-Bi2O3→γ-Bi2O3→α-Bi2O3 transformation in a facile precipitation method. Journal of Alloys and Compounds (J. Alloy. Compd.), 2016, 689: 787-799.

16. Yuanyuan Lu, Guo Liu, Jing Zhang*, Zhaochi Feng, Can Li, Zhi Li. Fabrication of a monoclinic/hexagonal junction in WO3 and its enhanced photocatalytic degradation of rhodamine B. Chinese Journal of Catalysis (Chinese J. Catal.), 2016, 37(3): 349-358. 

17. Guo Liu, Yuanyuan Lu, Jing Zhang*, Zhi Li, Zhaochi Feng, Can Li. Phase transformation and photocatalytic properties of Bi2O3 prepared using a precipitation method. Acta Physico-Chimica Sinica (Acta Phys. Chim. Sin. 物理化学学报), 2016, 32(5): 1247-1256. 

18. Guo Liu, Weicheng Wu, Yuanyuan Lu, SongYan, Jing Zhang*, Genxiang Luo, Xiaoguang Ding. Preparation of CuS/TiO2 composites with high photocatalytic activity at low temperature for degradation of rodamine B. Journal of Synthetic Crystals (人工晶体学报), 2016, 45(6): 1567-1573.

19. Jing Zhang*, Weicheng Wu, Song Yan, Gang Chu. Enhanced photocatalytic activity for the degradation of rhodamine B by TiO2 modified with Gd2O3 calcined at high temperature. Applied Surface Science (Appl. Surf. Sci.), 2015, 344: 249-256.

20. Jing Zhang*, Weicheng Wu, Chuang Liu, Xiaoguang Ding, Gang Chu, Jianguo Zhang. Studies on the hydrogenation of acetonitrile over fresh Mo2C/γ-Al2O3 catalyst by in-situ IR spectroscopy. China Petroleum Processing & Petrochemical Technology (China Pet. Process. Pe.), 2015, 17(3): 61-66.

21. Yangyang Zhang, Jing Zhang*, Qian Xu, Song Yan, Shanlin Zhao, Genxiang Luo. Surface phase of TiO2 modified with La2O3 and its effect on the photocatalytic H2 evolution. Materials Research Bulletin (Mater. Res. Bull.), 2014, 53: 107-115. 

22. Fan Yang, Jing Zhang*, Weicheng Wu*. Hydrogenation study of benzene over a Mo2C/γ-Al2O3 catalyst by in situ IR spectroscopy. Acta Physico-Chimica Sinica (Acta Phys. Chim. Sin. 物理化学学报), 2014, 30(5): 943-949.

23. Jing Zhang*, Weicheng Wu, Shiyang Liu. In situ IR spectroscopic study on the hydrogenation of 1, 3-butadiene on fresh Mo2C/γ-Al2O3 catalyst. China Petroleum Processing & Petrochemical Technology (China Pet. Process. Pe.), 2014, 16(4): 32-37. 

24. Yan Wang, Jing Zhang*, Shiyang Liu, Song Yan, Weicheng Wu, Qian Xu, Can li. Study on the influence of Ni modifying on phase transformation and photocatalytic activity of TiO2. China Petroleum Processing & Petrochemical Technology (China Pet. Process. Pe.), 2014, 16(3): 42-49.

25. Jing Zhang*, Song Yan, Shanlin Zhao, Qian Xu, Can Li. Photocatalytic activity for H2 evolution of TiO2 with tuned surface crystalline phase. Applied Surface Science (Appl. Surf. Sci.), 2013, 280: 304-311.

26. Jing Zhang, Eric Weitz*. An in situ NMR study of the mechanism for the catalytic conversion of fructose to 5-hydroxymethylfurfural and then to levulinic acid using 13C labeled D-fructose. ACS Catalysis (ACS Catal.), 2012, 2(6): 1211-1218.

27. Mengqiong Yuan, Jing Zhang*, Song Yan, Genxiang Luo, Qian Xu, Xiang Wang, Can Li. Effect of Nd2Oaddition on the surface phase of TiO2 and photocatalytic activity studied by UV Raman spectroscopy. Journal of Alloys and Compounds (J. Alloy. Compd.), 2011, 509(21): 6227-6235. 

28. Jing Zhang*, Song Yan, Lu Fu, Fei Wang, Mengqiong Yuan, Genxiang Luo. Photocatalytic degradation of rhodamine B on anatase, rutile, and brookite TiO2. Chinese Journal of Catalysis (Chinese J. Catal.), 2011, 32(6-8): 983-991. 

29. Jing Zhang*, Song Yan, Mengqiong Yuan, Xiang Wang, Can Li. UV Raman spectroscopic study on the surface phase of ZrO2 modified with Nd2O3. Materials Letters (Mater. Lett.), 2011, 65(2): 201-204. 

30. Jing Zhang, Qian Xu, Meijun Li, Zhaochi Feng, Can Li*. UV Raman spectroscopic study on TiO2. II. effect of nanoparticle size on the outer/inner phase transformations. The Journal of Physical Chemistry C (J. Phys. Chem. C), 2009, 113(5): 1698-1704.

31. Jing Zhang, Qian Xu, Zhaochi Feng, Meijun Li, Can Li*. Importance of the relationship between surface phases and photocatalytic activity of TiO2. Angewandte Chemie-International Edition (Angew. Chem. Int. Ed.), 2008, 47(9): 1766-1769.

32. Jing Zhang, Meijun Li, Zhaochi Feng, Jun Chen, Can Li*. UV Raman spectroscopic study on TiO2. I. phase transformation at the surface and in the bulk. The Journal of Physical Chemistry B (J. Phys. Chem. B), 2006, 110(2): 927-935.

33. Yanmei Zhang*,  Jing Zhang*,  Miaomiao Tian, Gang Chu, Chunshan Quan. Fabrication of amino-functionalized Fe3O4@Cu3(BTC)2 for heterogeneous Knoevenagel condensation. Chinese Journal of Catalysis (Chinese J. Catal.), 2016, 37(3): 420-427.

34. Yanmei Zhang*, Jing Zhang, Xiaofang Li, Gang Chu, Miaomiao Tian, Chunshan Quan. Preparation of Fe3O4@IRMOF-3/Pd and its catalytic performance as a heterogeneous multifunctional catalyst. Chemistry Journal of Chinese Universities (Chem. J Chinese U. 高等学校化学学报), 2016, 37(3): 573-580.

35. Tianlin Dai, Yanmei Zhang*, Gang Chu*, Jing Zhang. Core-shell magnetic microsphere Fe3O4@UiO-66-NH2: characterization and application as heterogeneous catalyst. Chinese Journal of Inorganic Chemistry (Chinese J. Inorg. Chem. 无机化学学报) 2016, 32(4): 609-616.

36. Qian Xu, Yi Ma, Jing Zhang, Xiuli Wang, Zhaochi Feng, Can Li*. Enhancing hydrogen production activity and suppressing CO formation from photocatalytic biomass reforming on Pt/TiO2 by optimizing anatase-rutile phase structure. Journal of Catalysis (J. Catal.), 2011, 278(2): 329-335. 

37. Qian Xu, Jing Zhang, Zhaochi Feng, Can Li*. Surface structural transformation and the phase transition kinetics of brookite TiO2. Chemistry-An Asian Journal (Chem. Asian J.), 2010, 5(10): 2158-2161. 

38. Weiguang Su, Jing Zhang, Zhaochi Feng, Tao Chen, Pinliang Ying, Can Li*. Surface phases of TiO2 nanoparticles studied by UV Raman spectroscopy and FT-IR spectroscopy. The Journal of Physical Chemistry C (J. Phys. Chem. C), 2008, 112(20): 7710-7716. 

39. Qian Xu, Guoqing Jia, Jing Zhang, Zhaochi Feng, Can Li*. Surface phase composition of iron molybdate catalysts studied by UV Raman spectroscopy. The Journal of Physical Chemistry C (J. Phys. Chem. C), 2008, 112(25): 9387-9393. 

40. Zhonglai Li, Jing Zhang, Ying Li, Yejun Guan, Zhaochi Feng, Can Li*. Preparation and characterization of ordered mesoporous carbons on SBA-15 template. Journal of Materials Chemistry (J. Mater. Chem.), 2006, 16: 1350-1354. 



辽宁省先进清洁能源材料化学工程重点实验室  

地址:辽宁石油化工大学环境楼405

邮编:113001