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北方民族大学化学与化学工程学院导师教师师资介绍简介-毕迎普(兼职导师)

本站小编 Free考研考试/2021-11-27





毕迎普,1980年出生。现任中国科学院兰州化学物理研究所创新研究员,博士生导师,能源与环境纳米催化材料组课题组长。

2008年12月毕业于中国科学院兰州化学物理研究所并获理学博士学位。
2009-2011年在日本国立物质材料研究所(National Institute for Materials Science)国际纳米材料研究中心(International Center for Materials Nanoarchitectioncs)任特别研究员(博士后)。
2011年10月入选中科院“****”引进国外杰出人才到中科院兰州化学物理研究所工作,任创新研究员,2012年9月获得择优支持,2014年获得“中国催化新秀奖”,2016年获国家自然科学基金委优青支持。
主要从事金属/半导体纳米催化材料结构及功能设计合成,并对其光催化、光电转换、电催化以及催化制氢性能进行研究。主持中科院“****”项目、国家自然科学基金面上项目、科技部国家重点实验室方向性项目等。目前已在J. Am. Chem. Soc, Adv. Mater, Nano Energy,Chem Mater, Chem Commun, Chem Eur J等权威杂志发表50余篇论文,被引用1800余次,其中四篇引用超过100次,单篇最高引用600余次。


主要研究方向:
1.金属及半导体纳米材料结构与功能设计合成;
2.光催化分解水制氢,降解有机污染物及CO2还原;
3.太阳能光电转换纳米材料;
4.室温催化制氢反应研究;
5. 能源与环境电催化纳米材料。
承担课题:



代表性论文:

2017 
[1]Lei Wang, Nhat Truong Nguyen, Yajun Zhang, Yingpu Bi,* Patrik Schmuki*, Ehanced Solar Water Splitting by Swift Charge Separation in Au/FeOOH Sandwiched Single Crystalline Fe2O3 Nanoflake Photoelectrodes,ChemSusChem, 2017, DOI: 10.1002/cssc..


[2]Lei Wang, Hongyan Hu, Nhat Truong Nguyen, Yajun Zhang, Patrik Schmuki*, Yingpu Bi*,Plasmon-Induced Hole-Depletion Layer on Hematite Nanoflake Photoanodes for Highly Efficient Solar Water Splitting,Nano Energy,2017, 35, 171.

[3] Wei Wang, Yajun Zhang, Lei Wang, Yingpu Bi*, Facile synthesis of Fe3+/Fe2+ self-doped nanoporous FeVO4 photoanodes for efficient solar water splitting,J. Mater. Chem. A,2017, 5, 2478.
[4] Chenchen Feng, Zhonghao Wang, Ying Ma, Yajun Zhang, Lei Wang, Yingpu Bi*, Ultrathin graphitic C3N4 nanosheets as highly efficient metal-free cocatalyst for water oxidation,App. Catal. B, 2017, 205, 19.
[5] Zhengbo Jiao*, Mingdong Shang, Jiamei Liu, Gongxuan Lu, Xuesen Wang, Yingpu Bi*, The charge transfer mechanism of Bi modified TiO 2 nanotube arrays: TiO2 serving as a “charge-transfer-bridge”,Nano Energy, 2017, 31,96.


2016
[1] Mingdong Shang, Hongyan Hu, Gongxuan Lu, and Yingpu Bi*, Synergistic effects of SrTiO3 nanocubes and Ti3+ dual-doping for highly improving photoelectrochemical performance of TiO2 nanotube arrays under visible light,J. Mater. Chem. A, 2016, DOI: 10.1039/c6ta00033a.
[2] Ying Ma, Yulong Jia, Lina Wang, Min Yang, Yingpu Bi*, Yanxing Qi*, Efficient Charge Separation between Bi and Bi2MoO6 for Photoelectrochemical Properties,Chem. Eur. J, 2016, DOI: 10.1002/chem..
[3] Xiaogang Liu, Guojun Dong, Shaopeng Li, Gongxuan Lu, Yingpu Bi*, Direct Observation of Charge Separation on Anatase TiO2 Crystals with Selectively Etched {001} Facets,J. Am. Chem. Soc. 2016, DOI: 10.1021/jacs.5b12521.
[4] Shaopeng Li, Hongyan Hu, Yingpu Bi*, Ultra-thin TiO2 nanosheets decorated with Pd quantum dots for high-efficiency hydrogen production from aldehyde solution,J. Mater. Chem. A, 2016, 4, 796.
2015
[1] Chenchen Feng, Zhengbo Jiao, Shaopeng Li, Yan Zhang, and Yingpu Bi*, Facile Fabrication of BiVO4 Nanofilms with Controlled Pore Size and their Photoelectrochemical Performances,Nanoscale, 2015, 7, 20374.
[2] Bingjun Jin, Zhengbo Jiao, Yingpu Bi*, Efficient Charge Separation between Bi2MoO6 Nanosheets and ZnO Nanowires for Enhanced Photoelectrochemical Properties,J. Mater. Chem. A, 2015, 3, 19702.
[3]Chenchen Feng, Dahui Wang*, Bingjun Jin and Zhengbo Jiao*, The enhanced photocatalytic properties of BiOCl/BiVO4 p–n heterojunctions via plasmon resonance of metal Bi,RSC Adv., 2015,5, 75947.
[4]Hongchao Yu, Haixiao Kang, Zhengbo Jiao, Gongxuan Lu*, Yingpu Bi*, Tunable photocatalytic selectivity and stability of Ba-doped Ag3PO4 hollow nanosheets,Chin. J. Catal., 2015, 36, 1587. (Invited forthe Special Issue for Excellent Research Work in Recognition of Scientists Who Are in Catalysis Field in China)

[5] David James Martin, Guigao Liu, Savio J. A. Moniz, Yingpu Bi, Andrew M. Beale, Jinhua Ye*, Junwang Tang*, Efficient visible driven photocatalyst, silver phosphate: performance, understanding and perspective,Chem. Soc. Rev, 2015, DOI:10.1039/c5cs00380f.


 
[6] Dongdong Qin, Yingpu Bi, Xinjian Feng, Wei Wang, Greg D. Barber, Ting Wang, Yumin Song, Xiaoquan Lu, Thomas E. Mallouk*, Hydrothermal Growth and Photoelectrochemistry of Highly Oriented, Crystalline Anatase TiO2 Nanorods on Transparent Conducting Electrodes,Chem Mater, 2015, 27, 4180.
[7]Ying Ma,Yulong Jia,Zhengbo Jiao, Min Yang, Yanxing Qi*,andYingpu Bi*,Hierarchical Bi2MoO6 Nanosheet-Built Frameworks with Excellent Photocatalytic Properties,Chem Commun, 2015, 51, 6655.

[8] Teng Wang,Bingjun Jin,Zhengbo Jiao, Gongxuan Lu,andYingpu Bi*,Electric-Field-Directed Growth and Photoelectrochemical Properties of Cross-linked Au/ZnO Hierarchical Architecture,Chem Commun, 2015, 51, 2103.


2014
[1] Zhengbo Jiao, Yan Zhang, Shuxin Ouyang, Hongchao Yu, Gongxuan Lu, Jinhua Ye, Yingpu Bi*,BiAg Alloy Nanospheres: A New Photocatalyst for H2Evolution from Water Splitting,ACS Appl. Mater. Inter, 2014, 6, 19488.

[2] Qingsong Dong, Hongchao Yu, Zhengbo Jiao, Gongxuan Lu, Yingpu Bi*,New facile synthesis of one-dimensional Ag@TiO2 anatase core–shell nanowires for enhanced photocatalytic properties,RSC Adv., 2014, 4, 59114.


[3] Teng Wang, Bingjun Jin, Zhengbo Jiao, Gongxuan Lu, Jinhua Ye, Yingpu Bi*,Photo-directed growth of Au nanowires on ZnO arrays for enhancing photoelectrochemical performances,J. Mater. Chem. A, 2014,2,15553.
[4] Hongyan Hu, Zhengbo Jiao, Gongxuan Lu, Jinhua Ye,Yingpu Bi*,Enhanced Photocatalytic Properties of Biomimetic Ag/AgCl Heterostructures,RSC Adv, 2014, 4, 31795.

[5] Qingsong Dong, Zhengbo Jiao, Hongchao Yu, Gongxuan Lu, Jinhua Ye, Yingpu Bi*,Facile Synthesis of Hollow Ag@AgBr Heterostructures with Highly Efficient Visible-Light Photocatalytic Properties,CrystEngComm, 2014, 16,8317.
[6]Hongyan Hu,Zhengbo Jiao,Jinhua Ye,Gongxuan Lu,Yingpu Bi*,Highly Efficient Hydrogen Productionfrom Alkaline AldehydeSolutions Facilitatedby Palladium Nanotubes,Nano Energy, 2014, 8, 103.
[7] Tao Chen, Teng Wang, Yawen Li, Yunshang Yang*, Zhengbo Jiao*, Jinhua Ye and Yingpu Bi, Controllable synthesis of silver-nanoparticle-modified TiO2 Nanotube arrays for enhancing photoelectrochemical performance,NanosciNanotech Lett,2014,6, 672.
 
[8] Yawen Li, Tao Chen, Teng Wang, Yingpeng Zhang*, Gongxuan Lu, Yingpu Bi*, Highly efficient hydrogen production from formaldehyde over Ag/γ-Al2O3 catalysts at room temperature,Int J Hydrogen Energ, 2014, 39, 9114.
  
[9] Zhengbo Jiao, Tao Chen; Hongchao Yu; Teng Wang; Gongxuan Lu; Yingpu Bi*, Morphology modulation of SrTiO3/TiO2 heterostructures for enhanced photoelectrochemical performance,J Colloid Inter Sci, 2014, 219, 95.
  
[10] Zhengbo Jiao, Yan Zhang, Tao Chen, Gongxuan Lu, Jinhua Ye, and Yingpu Bi*, TiO2 Nanotube Arrays Modified with Cr-doped SrTiO3 Nanocubes for Highly Efficient Hydrogen Evolution under Visible Light,Chem Eur J, 2014, 20, 2654.
  
[11] Hongchao Yu, Qingsong Dong, Zhengbo Jiao, Teng Wang, Jiantai Ma, Gongxuan Lu,* and Yingpu Bi*, Ion exchange synthesis of PAN/Ag3PO4 core-shell nanofibers with enhanced photocatalytic properties,J. Mater. Chem. A, 2014, 2, 1668.
  
[12] Jinyan Xiong, Qingsong Dong, Teng Wang, Zhengbo Jiao, Gongxuan Lu,* and Yingpu Bi*, Direct Conversion of Bi Nanospheres into 3D Flower-like BiOBr Nanoarchitectures with Enhanced Photocatalytic Properties,RSC Adv.,2014, 4, 583.
 
2013
[1] Zhengbo Jiao, Tao Chen, Jinyan Xiong, Teng Wang, Gongxuan Lu, Jinhua Ye & Yingpu Bi*, Visible-light-driven photoelectrochemical and photocatalytic performances of Cr-doped SrTiO3/TiO2 heterostructured nanotube arrays,Sci.Rep., 2013, 3, 2720.
  
[2] Hongyan Hu, Zhengbo Jiao, Teng Wang, Jinhua Ye, Gongxuan Lu* and Yingpu Bi*, Enhanced Photocatalytic Activity of Ag/Ag3PO4 Coaxial Hetero-Nanowires,J. Mater. Chem A., 2013,1, 10612.
  
[3] Teng Wang, Zhenbo Jiao, Tao Chen,Yawen Li,Wei Ren, Shengling Lin,* Gongxuan Lu,* Jinhua Ye, and Yingpu Bi,* Vertically aligned ZnO nanowire arrays tip-grafted with silver nanoparticles for photoelectrochemical applications,Nanoscale, 2013,5, 7552.
  
[4] Jinyan Xiong, Zhengbo Jiao, Gongxuan Lu, Jinhua Ye and Yingpu Bi*,Facile and Rapid Oxidation Fabrication of BiOCl Hierarchical Nanostructure with Enhanced Photocatalytic Properties,Chem Eur J, 2013, 19, 9472.
  
[5] Hongchao Yu, Zhengbo Jiao, Hongyan Hu, Gongxuan Lu,* Jinhua Ye and Yingpu Bi*, Fabrication of Ag3PO4–PAN composite nanofibers for photocatalytic applications,CrystEngComm, 2013, 15, 4802.
  
[6] Junyu Cao, Juanjuan Xing, Yuanjian Zhang, Hua Tong, Yingpu Bi, Tetsuya Kako, Masaki Takeguchi, and Jinhua Ye*, Photoelectrochemical Properties of Nanomultiple CaFe2O4/ZnFe2O4pn Junction Photoelectrodes,Langmuir, 2013, 29, 3116.
  
[7] Hongyan Hu, Zhengbo Jiao, Hongchao Yu, Gongxuan Lu, Jinhua Ye and Yingpu Bi*, Facile synthesis of tetrahedral Ag3PO4 submicro-crystals with enhanced photocatalytic properties,J. Mater. Chem A., 2013, 1, 2387.
   
[8] Zhengbo Jiao, Yan Zhang, Hongchao Yu, Gongxuan Lu, Jinhua Ye and Yingpu Bi*, Concave trisoctahedral Ag3PO4 microcrystals with high-index facets and enhanced photocatalytic properties,Chem Commun, 2013, 49, 636.
  
2012-2011
[1] Shuxin Ouyang, Hua Tong, Naoto Umezawa, Junyu Cao, Peng Li, Yingpu Bi, Yuanjian Zhang, and Jinhua Ye, Surface-Alkalinization-Induced Enhancement of Photocatalytic H2 Evolution over SrTiO3-Based Photocatalysts,J. Am. Chem. Soc., 2012, 134 (4), 1974.
  
[2] Yingpu Bi*, Hongyan Hu, Shuxin Ouyang, Zhengbo Jiao, Gongxuan Lu*, Jinhua Ye*, Selective Growth of Metallic Ag Nanocrystals on Ag3PO4 Submicro-Cubes for Photocatalytic Applications,Chem. Eur. J. 2012, 18, 14272.
  
[3] Yingpu Bi*, Hongyan Hu, Zhengbo Jiao, Hongchao Yu, Gongxuan Lu and Jinhua Ye, Two-dimensional dendritic Ag3PO4 nanostructures and their photocatalytic properties,Phys. Chem. Chem. Phys., 2012, 14, 14486.
  
[4] Yingpu Bi,* Hongyan Hu, Shuxin Ouyang, Zhengbo Jiao, Gongxuan Lu* and Jinhua Ye*, Selective growth of Ag3PO4 submicro-cubes on Ag nanowires to fabricate necklace-like heterostructures for photocatalytic applications,J. Mater. Chem., 2012, 22, 14847.
  
[5] Yingpu Bi,* Hongyan Hu, Shuxin Ouyang, Gongxuan Lu,* Junyu Cao and Jinhua Ye*, Photocatalytic and photoelectric properties of cubic Ag3PO4 sub-microcrystals with sharp corners and edges,Chem Commun, 2012, 48, 3748.
  
[6] Hua Tong, Shuxin Ouyang, Yingpu Bi, Naoto Umezawa, Mitsutake Oshikiri, Jinhua Ye*. Nano-photocatalytic Materials: Possibilities and Challenges.Adv Mater(Invited Review). 2012, 24, 229.
  
[7] Yingpu Bi, Shuxin Ouyang, Naoto Umezawa, Junyu Cao, and Jinhua Ye*, Facet Effect of Single-Crystalline Ag3PO4 Sub-microcrystals on Photocatalytic Properties.J. Am. Chem. Soc. 2011, 133, 6490.
  
[8] Yingpu Bi, Shuxin Ouyang, Junyu Cao, and Jinhua Ye*, Facile synthesis of rhombic dodecahedral AgX/Ag3PO4 (X = Cl, Br, I) heterocrystals with enhanced photocatalytic properties and stabilities.Phys Chem Chem Phys, 2011, 13, 10071.
  
2010-2009
[1]. Yingpu Bi, Jinhua Ye*, Direct Conversion of Commercial Silver Foils into High Aspect Ratio AgBr Nanowires with Enhanced Photocatalytic Properties.Chem Eur J, 2010, 16, 10327.
  
[2]Yingpu Bi, Jinhua Ye*, Cold-welding fabrication of highly ordered gold nanochannel monolayers in aqueous medium.Chem Commun, 2010, 46, 6912. (Highlighted as a Hot Paper)
  
[3] Yingpu Bi, Hongyan Hu, Qiuye Li, Gongxuan Lu*. Efficient generation of hydrogen from biomass without carbon monoxide at room temperature - Formaldehyde to hydrogen catalyzed by Ag nanocrystals.Int J Hydrogen Energ. 2010, 35, 7177.
  
[4] Yingpu Bi, Jinhua Ye*. Heteroepitaxial growth of platinum nanocrystals on AgCl nanotubes via galvanic replacement reaction.Chem Commun, 2010, 46, 1532.
  
[5] Yingpu Bi, Hongyan Hu, Gongxuan Lu*, Highly ordered rectangular silver nanowire monolayers: water-assisted synthesis and galvanic replacement reaction with HAuCl4.Chem Commun, 2010, 46, 598.
  
[6] Yingpu Bi, Jinhua Ye*. In situ oxidation synthesis of Ag/AgCl core-shell nanowires and their photocatalytic properties.Chem Commun, 2009, 6551.
  
[7] Yingpu Bi, Gongxuan Lu*. Control growth of uniform platinum nanotubes and their catalytic properties for methanol electrooxidation.Electrochem Commun, 2009,11, 45.
[8] Jiangli Geng, Yingpu Bi, Gongxuan Lu*. Morphology-dependent activity of silver nanostructures towards the electro-oxidation of formaldehyde.Electrochem Commun, 2009,11, 1255.
2008-2005
[1] Yingpu Bi, Gongxuan Lu*. Iodide ions control galvanic replacement growth of uniform rhodium nanotubes at room temperature.Chem Commun, 2008, 6402.
[2] Yingpu Bi, Gongxuan Lu*. Facile synthesis of platinum nanofiber/nanotube junction structures at room temperature.Chem Mater. 2008, 20, 1224.
[3] Yingpu Bi, Gongxuan Lu*. Nano-Cu catalyze hydrogen production from formaldehyde solution at room temperature.Int J Hydrogen Energ. 2008, 33, 2225.
[4] Yingpu Bi, Gongxuan Lu*. Controlled synthesis of pentagonal gold nanotubes at room temperature.Nanotechnology, 2008, 19, 275306.
[5] Yingpu Bi, Gongxuan Lu*. Morphological controlled synthesis and catalytic activities of gold nanocrystals.Mater Lett.2008, 62, 2696.
[6] Yingpu Bi, Gongxuan Lu*. Morphology-controlled preparation of silver nanocrystals and their application in catalysis.Chem Lett.2008, 5, 514.
[7] Yingpu Bi, Gongxuan Lu*. Preparation and catalytic activity of two-dimensionally networked gold nanowires.Chem Lett.2006, 35, 914.
[8] Yingpu Bi, Gongxuan Lu*, Dongsheng Geng and Yushui Bi. Correlation of Activity and Size of Pt Nanoparticles for Methanol Steam Reforming over Pt/Y-Al2O3 Catalysts.ActaChimica Sinica, 2005, 63, 802.
[9] Yingpu Bi, Dongsheng Geng, Yushui Bi, and Gongxuan Lu*. Investigation of Nano-Pt/Al2O3 Preparation via Room Temperature Reduction and Its Catalytic Properties.J Mol Catal(China), 2005, 19, 98.


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