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副教授

王希涛

现任职称/职务:副教授
通讯地址:天津大学化工学院
电子邮箱:wangxt@tju.edu.cn
办公电话:27402972

论著专利:

 

1. Xu, H; Chen, HW; Wang, XT *. Fabrication of In2O3/In2S3 heterostructures for enhanced photoelectrochemical performance, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY 46 (64) , pp.32445-32454, Sep 16 2021

2. Wan, ZY; Wang, J; Wang, XT*. Photocatalytic reduction of CO2 with H2O vapor into solar fuels over Ni modified porous In2O3 nanosheets, Aug 15 2021 | CATALYSIS TODAY 374 , pp.44-52

3. Yan, T; Wang, K and Wang, XT*. Preparation of hierarchically porous carbon nanosheets by carbonizing resol resin for supercapacitors, Aug 2021 | Apr 2021 (在线发表) | JOURNAL OF POROUS MATERIALS 28 (4) , pp.1187-1196

4. Yan, DH; Wan, ZY; (...); Wang, XT*. In2O3/In2S3 Heterostructures Derived from In-MOFs with Enhanced Visible Light Photocatalytic Performance for CO2 Reduction, Mar 12 2021 | CHEMISTRYSELECT 6 (10) , pp.2508-2515

5. Yan, T; Wan, ZY;  Wang, XT*. A 3D Carbon Foam Derived from Phenol Resin via CsCl Soft-Templating Approach for High-Performance Supercapacitor, Mar 2020 | Jan 2020 (在线发表) | ENERGY TECHNOLOGY 8 (3)

6. Li, Q; Yang, GB;  Wang, XT*. Preparation of carbon-doped alumina beads and their application as the supports of Pt-Sn-K catalysts for the dehydrogenation of propane, Apr 2020 | REACTION KINETICS MECHANISMS AND CATALYSIS 129 (2) , pp.805-817

7. Bingbing Hu, Maocong Hu, Qiang Guo, Kang Wang, Xitao Wang*.  In-vacancy engineered plate-like In(OH)3 for effective photocatalytic reduction of CO2 with H2O vapor, Applied catalysis B: Evironmental201925377-87

8. Wan, Yongli; Guo, Qiang; Wang, Kang; Xitao Wang*. Efficient and selective photocatalytic oxidation of cyclohexane using O-2 as oxidant in VOCl2 solution and mechanism insight, CHEMICAL ENGINEERING SCIENCE  : 203   : 163-172   出版年: AUG 10 2019

9. Zhang, Jianyu; Ali, Sikander; Liu, Fugui; Xitao Wang*. Phosphorus-Doped Carbon Composites with Rich Graphene Derived from Phenol Resin as Supercapacitor Electrode Materials with High Window Potential and Energy Density, JOURNAL OF ELECTRONIC MATERIALS  : 48   : 7   : 4196-4206   出版年: JUL 2019

10. Hu, Bingbing; Guo, Qiang; Wang, Kang; Xitao Wang*. Enhanced photocatalytic activity of porous In2O3 for reduction of CO2 with H2O, JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS  : 30   : 8   : 7950-7962   出版年: APR 2019

11. Qinya LiMaocong HuKang WangXitao Wang(*). One-step approach for fabrication of 3D porous carbon/graphene composites as supercapacitor electrode materials, Catalysis Today, 2019, 228-239

12. Guo QiangXitao Wang(*). Carbon-nitride-based core–shell nanomaterials: synthesis and applicationsJ Mater Sci Mater Elect201829:20280–20301

13. Yuehua BaiKang WangXitao Wang(*). Influence of Ce 3doping on the optical and photocatalytic properties of Zn 0.8 Cd 0.2 S-ethylenediamine hybrid nanosheets, Volume 356, 1 April 2018, Pages 355-363

14. Jiajia Guo,Kang Wang and Xitao Wang(*). Photocatalytic reduction of CO2 with H2O vapor under visible light over Ce dopedZnFe2O4,Catal. Sci. Technol., 2017,7, 6013-6025

15. Xin Chunyu; Hu Maocong; Wang KangWang Xitao(*). Significant Enhancement of Photocatalytic Reduction of CO2 with H2O over ZnO by the Formation of Basic Zinc Carbonate, Langmuir, 2017,33(27):6667-6676

16. Wang, Zhenli; Zhang,Haiyue; Cao, Hongwei; Wang Xitao*. Facile preparation of ZnS/CdS core/shel lnanotubes and their enhanced photocatalytic performance, International Journal of Hydrogen Energy,2017, 42(27): 17394-17402

17. Wang Xitao(*)Lv RongWang KangSynthesis of ZnO@ZnS-Bi2S3 core-shell nanorods grown on reduced graphene oxide sheets and its enhanced photocatalytic performanceJournal of Materials Chemistry A20142 22):8304-8313 

18. Xu, JimengSang, HuanxinWang, Xitao(*)Wang, KangFacile synthesis and photocatalytic properties ofZnO core/ZnS-CdS solid solution shell nanorods grown vertically on reductive graphene oxideDalton Transactions 20154420):9528-9537

19. Wang KangXu JimengWang xitao(*)The effects of ZnO morphology on photocatalytic efficiency of ZnO/RGO nanocompositesAPPLIED SURFACESCIENCE2016360270-275 

20. Zhang, HaiyueXin, ChunyuWang, Xitao(*)Wang, Kang(*)Facile synthesis of Cd0.2Zn0.8Sethylenediaminehybrid solid solution and its improved photocatalytic performanceInternational Journal of Hydrogen Energy20164128):12019-12028 

21. Wang YaningWang Kang(*)Wang Xitao(*)Preparation of Ag3PO4/Ni-3(PO4)(2) hetero-composites by cation exchange reaction and its enhancing photocatalytic performanceJournal of Colloid and Interface Science 2016466178-185 

22. Wang ShanWang Kang(*)Wang Xitao(*)Novel preparation of highly dispersed Ni2P embedded in carbon framework and its improved catalytic performanceApplied Surface Science2016386442-450

23. Xue, Yan(#)Wang, Xitao(*)The effects of Ag doping on crystalline structure and photocatalytic properties of BiVO4International Journal of Hydrogen Energy20154017):5878-5888

24. Lv, Rong(#)Wang, Xitao(*)Lv, WeiXu, YanliGe, YonghuiHe, HuiLi, GengWu, XiaoqianLi, XuLi, QiangFacile synthesis of ZnO nanorods grown on graphene sheets and its enhanced photocatalytic efficiencyJournal of Chemical Technology and Biotechnology2015903):550-558 

25. Xu, YanliSang, HuanxinWang, KangWang, Xitao(*)Catalytic dehydrogenation of isobutane in the presence of hydrogen over Cs-modified Ni2Psupported on active carbonApplied Surface Science2014316163-170 

26. Xu, YanliWang, Xitao(*)Lv, RongInteraction between Cs andNi2P/SiO2 for enhancing isobutane dehydrogenation in the presence of hydrogenReaction Kinetics, Mechanisms and Catalysis20141132):393406 

27. Liu, Shan(#)Wang, Xitao(*)Wang, KangLv, RongXu, YanliZnO/ZnS -PdS core/shell nanorods: Synthesis, characterization and application for photocatalytic hydrogen production from a glycerol/water solution Applied Surface Science2013283732-739 

28. Liu, Shan(#)Wang, Xitao(*)Zhao, WenxiWang, KangSang, HuanxinHe, ZhongSynthesis, characterization and enhanced photocatalytic performance of Ag2S-coupled ZnO/ZnS core/shell nanorodsJournal of Alloys and Compounds201356884-91

29. Zhao, WenxiWang, Xitao(*)Sang, HuanxinWang, KangSynthesis ofBi-doped TiO2 Nanotubes and Enhanced Photocatalytic Activity for Hydrogen Evolution from Glycerol SolutionChinese JournalofChemistry2013313):415-420

30. Sang Huan-XinTian YeWang Xi-Tao(*)Tao LeiPhotocatalytic H-2Evolution from Glycerol Solution over Bi3 -doped TiO2 NanoparticlesJournal of Inorganic Materials20122712):1283-1288

31. Tian YeSang HuanxinWang Xitao(*)Effects of P Doping Amount on Structure and Photocatalytic Performance of TiO2 for H-2 Production from Glycerol SolutionChinese Journal of Catalysis2012338): 1395-1401

32. Fan, CancanWang, Xitao(*)Sang, HuanxinWang, FenEffects of Composition and Calcination Temperature on Photocatalytic H-2 Evolution over Cd1-xZnxS/SiO2 from Glycerol and Water MixtureInternational Journal of Photoenergy2012http://dx.doi.org/10.1155/2012/492746 

33. production from glycerol solution over ZnO/ZnS core/shell nanorods prepared by a low temperature routeInternational Journal of Hydrogen Energy2012372):1348-1355

34. Wang Xitao(*)Bi ChaoZhong ShunheXiao XiufenPreparation of Mesoporous Nanosized MoPO-AlPO4 and Its Catalytic Performance for Selective Oxidation of IsobuteneChinese Journal of Catalysis2010311):8489

35. Wang, XT(*)Zhong, SHXiao, XFPhoto-catalysis of ethane and carbon dioxide to produce hydrocarbon oxygenates over ZnO-TiO2/SiO2catalystJournal of Molecular Catalysis A: Chemical20052291-2):87-93

36. wang xitao(*)Effects of Bi promoter on the performances ofMoVO/AlPO4 catalyst for selective oxidation of isobutane tomethacroleinJournal of Natural GasChemistry, 2012,165-169