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  程修文

  主管工作

  技术总工,协助主任开展科学研究及技术开发工作,全面指导各个研究所、子中心、基金会和创新创业学院各项学术技术工作。

  

  个人简介

  程修文,男,哈尔滨工业大学环境工程专业工学博士,教授,硕士生导师。发表学术论文近80篇,主要学术成果发表在SCI一区、二区期刊上,SCI收录60余篇,是《Applied Catalysis B: Environmental》、《Water Research》、《Journal of Hazardous Materials》及《Electrochimica Acta》等国际期刊审稿人。

  【研究项目

  1.国家自然科学基金青年基金:暴露{101}面自掺杂TiO2纳米片薄膜光电极制备及其可见光降解水中PPCPs研究(No. 51508254)

  2. 甘肃省自然科学基金:N掺杂TiO2纳米管阵列光电极制备及其可见光降解水中双氯芬酸机制研究(No. 1506RJZA216)

  主要学术成果

  [1] Yuqi Cui, Qiuling Ma, Xiaoyong Deng, Qi Meng, Xiuwen Cheng*, Mingzheng Xie, Xiaoli Li, Qingfeng Cheng, Huiling Liu, Fabrication of Ag-Ag2O/reduced TiO2 nanophotocatalyst and its enhanced visible light driven photocatalytic performance for degradation of diclofenac solution, Applied Catalysis B: Environmental, 2017, 206: 136-145.

  [2] Jianfeng Gou, Qiuling Ma, Yuqi Cui, Xiaoyong Deng, Huixuan Zhang, Xiuwen Cheng*, Xiaoli Li, Mingzheng Xie, Qingfeng Cheng, Huiling Liu,Visible light photocatalytic removal performance and mechanism of diclofenac degradation by Ag3PO4 sub-microcrystals through response surface methodology, Journal of Industrial and Engineering Chemistry, 2017, 49: 112-121.

  [3] Qiuling Ma, Huixuan Zhang, Xiaoyong Deng, Yuqi Cui, Xiuwen Cheng*, Xiaoli Li, Mingzheng Xie, Qingfeng Cheng, Bo Li,Electrochemical fabrication of NZVI/TiO2 nano-tube arrays photoelectrode and its enhanced visible light photocatalytic performance and mechanism for degradation of 4-chlorphenol, Separation and Purification Technology , 2017, 182: 144-150.

  [4] Xiaoyong Deng, Qiuling Ma, Yuqi Cui, Huixuan Zhang, Xiuwen Cheng*, Xiaoli Li, Mingzheng Xie, Qingfeng Cheng, Bo Li,Microwave-assisted synthesis of Ag2O/reduced TiO2 nano-tube arrays photoelectrode with enhanced visible photocatalytic activity for degradation of organic pollutants, Separation and Purification Technology, 2017, Accepted.

  [5] Huixuan Zhang, Xiaoyong Deng, Qiuling Ma, Yuqi Cui, Xiuwen Cheng*, Mingzheng Xie, Xiaoli Li, Qingfeng Cheng, Fabrication of Silver Decorated Graphene Oxide Composite for Photocatalytic Inactivation of Escherichia coli, Journal of Nanoscience and Nanotechnology, 2017, Accepted.

  [6] Qiuling Ma, Yuqi Cui, Xiaoyong Deng, Bo Li, Qingfeng Cheng, Xiuwen Cheng*, Fabrication of magnetic TiO2 nano-catalyst and its enhanced photocatalytic and recycle performance, Journal of Nanoscience and Nanotechnology, 2017,17: 2019-2024.

  [7] Qiuling Ma, Yuqi Cui, Xiaoyong Deng, Xiuwen Cheng*, Qingfeng Cheng, Bo Li, Controllable fabrication of TiO2nanobelts/nanotubes photoelectrode for dye sensitized solar cells, Journal of Nanoscience and Nanotechnology, 2017, 17: 2072-2078.

  [8] Jianfeng Gou, Qiuling Ma, Xiaoyong Deng, Yuqi Cui, Huixuan Zhang, Xiuwen Cheng*, Xiaoli Li, Mingzheng Xie, Qingfeng Cheng, Fabrication of Ag2O/TiO2-Zeolite composite and its enhanced solar light photocatalytic performance and mechanism for degradation of norfloxacin, Chemical Engineering Journal, 2017, 308: 818-826.

  [9] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Lisha Yang, Synthesis and characterization of N-doped TiO2 and its enhanced visible-light photocatalytic activity, Arabian Journal of Chemistry, 2016, 9: S1706-S1711.

  [10] Jialin Jia, Dong Li, Xiuwen Cheng, Jiafeng Wan, Xiujuan Yu, Construction of graphite/TiO2/nickel foam photoelectrode and itsenhanced photocatalytic activity, Applied Catalysis A: General 2016, 525: 128-136.

  [11] Xiuwen Cheng*, Qingfeng Cheng, Xiaoyong Deng, Pu Wang, Huiling Liu, A facile and novel strategy to synthesize reduced TiO2 nanotubes photoelectrode for photoelectrocatalytic degradation of diclofenac, Chemosphere, 2016, 144: 888-894.

  [12] Dong Li, JialinJia, Tong Zheng, Xiujuan Yu*, Xiuwen Cheng, Construction and characterization of visible light active Pdnano-crystallite decorated and C-N-S-co-doped TiO2 nanosheet array photoelectrode for enhanced photocatalytic degradation of acetylsalicylic acid, Applied Catalysis B: Environmental, 2016, 188: 259-271.

  [13] Yuqi Cui, Qi Meng, Xiaoyong Deng, Qiuling Ma, Huixuan Zhang, Xiuwen Cheng*, Xiaoli Li, Mingzheng Xie, Qingfeng, Fabrication of platinum nano-crystallites decorated TiO2 nano-tube array photoelectrode and its enhanced photoelectrocatlytic performance for degradation of aspirin and mechanism, Journal of Industrial and Engineering Chemistry 2016, 43: 177–184.

  [14] Xiuwen Cheng*, Pu Wang, Huiling Liu, Visible-light-driven photoelectrocatalytic degradation of diclofenac by N, S-TiO2 /TiO2 NTs photoelectrode: performance and mechanism study, Journal of Environmental Chemical Engineering, 2015, 3: 1713-1719.

  [15] Xiuwen Cheng*, Guoping Pan, Xiujuan Yu, Construction of high-efficient photoelectrocatalytic system by coupling with TiO2nano-tubes photoanode and active carbon/ Polytetrafluoroethylene cathode and its enhanced photoelectrocatalytic degradation of 2,4-dichlorophene and mechanism, Chemical Engineering Journal, 2015, 279: 264-272.

  [16] Xiuwen Cheng*, Xiaoyong Deng, Pu Wang, Huiling Liu, Coupling TiO2 nanotubes photoelectrode with Pdnano-particles and reduced graphene oxide for enhanced photocatalytic decomposition of diclofenac and mechanism insights, Separation and Purification Technology, 2015, 154: 51-59.

  [17] Xiuwen Cheng*, Qingfeng Cheng, Bo Li, Xiaoyong Deng, Junjing Li, Pu Wang, Baoqing Zhang, Huiling Liu, Xiaoning Wang, One-step construction of N/Ti3+codoped TiO2 nanotubes photoelectrode with high photoelectrochemical and photoelectrocatalytic performance, ElectrochimicaActa, 2015, 186: 442-448.

  [18] Xiuwen Cheng*, Qingfeng Cheng, Xiaoyong Deng, Pu Wang , Huiling Liu, Construction of TiO2nano-tubes arrays coupled with Ag2S nano-crystallites photoelectrode and its enhanced visible light photocatalytic performance and mechanism, ElectrochimicaActa, 2015, 184:264-275.

  [19] Xiuwen Cheng*, Guoping Pan, Xiujuan Yu, Visible Light Responsive PhotoassistedElectrocatalytic System Based on CdS NCs Decorated TiO2 Nano-tube Photoanode and Activated Carbon Containing Cathode for Wastewater Treatment, ElectrochimicaActa, 2015, 156: 94-101.

  [20] Xiuwen Cheng*, Qingfeng Cheng, Xianwei Li, Comparative study of photocatalytic performance on different TiO2/EG composite nanocatalyst, Science of Advanced Materials, 2015, 7(12): 2617-2622.

  [21] Xiuwen Cheng*, Guoping Pan, Xiujuan Yu, Effect of fabricating parameters on morphology and photocatalytic performance of CdS NCs/TiO2 NTs photoelecctrode for decomposition of organic pollutants, Advanced Engineering Materials, 2015, 17(11): 1616-1622.

  [22] Dong Li, Xiujuan Yu*, Xiuwen Cheng, Effects of hydrothermal temperature on the morphology and photoelectrocatalytic performance of TiO2-based nanomaterials photoelectrode, Functional Materials Letters, 2015, 8.

  [23] Dong Li, Xiuwen Cheng, Xiujuan Yu*, Zipeng Xing, Preparation and characterization of TiO2-based nanosheets for photocatalytic degradation of acetylsalicylic acid: Influence of calcination temperature, Chemical Engineering Journal, 2015, 279: 994-1003.

  [24] Dong Li, Zipeng Xing, Xiujuan Yu*, Xiuwen Cheng*, One-step hydrothermal synthesis of C-N-S-tridoped TiO2-based nanosheetsphotoelectrode for enhanced photoelectrocatalytic performance and mechanism, Electrochimica Acta, 2015, 170: 182-190.

  [25] Pu Wang, Huiling Liu*, Huan Fu, Xiuwen Cheng, Bing Wang, Qinghua Cheng, Jian Zhang, Pan Zou,Characterization and mechanism analysis of penicillin G biodegradation with Klebsiellapneumoniae Z1 isolated from waste penicillin bacterial residue, Journal of Industrial and Engineering Chemistry, 2015, 27: 50-58.

  [26] Pu Wang, Huiling Liu*, Bing Wang, Xiuwen Cheng, Qinghua Chen, Huan Fu, A method for determination of penicillin G residue in Waste penicilliumchrysogenum using high performance liquid chromatography, Applied Mechanics and Materials, 2015, 768: 15-24.

  [27] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Preparation of graphene film decorated TiO2nano-tube array photoelectrode and its enhanced visible light photocatalytic mechanism, Carbon, 2014, 66: 450-458.

  [28] Qi Zhao, Xiuwen Cheng, Juan Wu, Xiujuan Yu, Sulfur-free exfoliated graphite with large exfoliated volume:Preparation, characterization and its adsorption performance, Journal of Industrial and Engineering Chemistry, 2014, 20: 4028-4032.

  [29] Xiujuan Yu, Yuhang Zhang, Xiuwen Cheng, Preparation and photoelectrochemical performance of expanded graphite/TiO2 composite, ElectrochimicaActa, 2014, 137: 668-675.

  [30] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, Coupling immobilized TiO2nanobelts and Au nanoparticles for enhanced photocatalytic and photoelectrocatalytic activity and mechanism insights, Chemical Engineering Journal, 2014, 241: 145-154.

  [31] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Xiujuan Yu, Comparative study of photocatalytic performance on different TiO2nano-tubes arrays, Journal of Alloys and Compounds, 2013, 566: 120-124.

  [32] Xiuwen Cheng, Xiujuan Yu, Biying Li, Lei Yan, Zipeng Xing, Junjing Li, Enhanced visible light activity and mechanism of TiO2codoped with molybdenum and nitrogen, Materials Science and Engineering B, 2013, 178: 425-430.

  [33] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Preparation and characterization of palladium nano-crystallite decorated TiO2nano-tubes photoelectrode and its enhanced photocatalytic efficiency for degradation of diclofenac, Journal of Hazardous Materials, 2013, 254-255: 141-148.

  [34] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Enhanced photoelectric property and visible activity of nitrogen doped TiO2 synthesized from different nitrogen dopants, Applied Surface Science, 2013, 268: 204-208.

  [35] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Synthesis and characterization of C-N-S-tridoped TiO2 nano-crystalline photocatalyst and its photocatalytic activity for degradation of rhodamine B, Journal of Physics and Chemistry of Solids, 2013, 74: 684-690.

  [36] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Enhanced photoelectrocatalytic performance for degradation of diclofenac and mechanism with TiO2nano-particles decorated TiO2nano-tubes arrays photoelectrode, ElectrochimicaActa, 2013, 108: 203-210.

  [37] Xiuwen Cheng, Guoping Pan, Xiujuan Yu, Tong Zheng, Preparation of CdS NCs decorated TiO2nano-tubes arrays photoelectrode and its enhanced photoelectrocatalytic performance and mechanism, ElectrochimicaActa, 2013, 105: 535-541.

  [38] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Construction of N,S codoped TiO2 NCs decorated TiO2nano-tube array photoelectrode and its enhanced visible light photocatalytic mechanism, ElectrochimicaActa, 2013, 103: 134-142.

  [39] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Xiujuan Yu, Preparation and photoelectrocatalytic performance of TiO2nano-tubes arrays electrode, Advanced Materials Research, 2013, 661: 11-15.

  [40] Xiuwen Cheng, Guoping Pan, Xiujuan Yu, Tong Zhong, Ahmad Umar, Qiang Wang, Effect of post-Annealing treatment on photocatalytic and photoelectrocatalytic performances of TiO2 nanotube arrays photoelectrode, Journal of Nanoscience and Nanotechnology, 2013, 13(8): 5580-5585.

  [41] Xiuwen Cheng, Huiling Liu, Xiujuan Yu, Preparation of highly ordered TiO2 nanotube array photoelectrode for the photoelectrocatalytic degradation of methyl blue: activity and mechanism study, Science of Advanced Materials, 2013, 5: 1563-1570.

  [42] Junjing Li, Huiling Liu, Xiuwen Cheng, Qinghua Chen, Yanjun Xin, Zhenpeng Ma, Wenxian Xu, Jun Ma, Nanqi Ren, Preparation and characterization of palladium/polypyrrole/foam nickel electrode for electrocatalytichydrodechlorination, Chemical Engineering Journal, 2013, 225: 489-498.

  [43] Qinghua Chen, Huiling Liu, Yanjun Xin,Xiuwen Cheng, TiO2nanobelts - Effect of calcination temperature on optical, photoelectrochemical and photocatalytic properties, ElectrochimicaActa, 2013, 111: 284-291.

  [44] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, Junjing Li, Enhanced photoelectrochemical and photocatalytic performance of single-crystalline anatase TiO2(101) nanobelts arrays originating from nanotubes arrays, Applied Surface Science, 2013, 264: 476-484.

  [45] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, Jian Zhang, Junjing Li, Pu Wang, Huijuan Li, Controlled anodic growth of TiO2 nanobelts and assessment of photoelectrochemical and photocatalytic properties, ElectrochimicaActa, 2013, 99: 152-160.

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