教授
宋立民
  • 所属院校:
    天津工业大学
  • 所属院系:
    环境科学与工程学院
  • 研究领域:
    1、环境分析2、环境催化3、能源化工4、功能性微纳米材料
  • 职称:
    教授
  • 导师类型:
    硕导
  • 招生专业:
    --
个人简介

个人简述:

辽宁省开原市人,理学博士、教授、硕士研究生指导教师。目前主要从事环境催化、能源化工和功能性微纳米材料等研究工作,在国外专业学术期刊上发表 SCI 收录论文近 70 余篇,授权中国发明专利 4 项。


科研工作:

(1) Super-high activity of Bi3+ doped Ag3PO4 and enhanced photocatalyticmechanism. Applied Catalysis B: Environmental, 2014, 152–153, 129–139.(2) Fullerenes/graphite carbon nitride with enhanced photocatalytic hydrogenevolution ability. Journal of Physical Chemistry C, 2017, 121, 293−299.(3) Synthesis and characterization of Bi3+-doped Ag/AgCl and enhancedphotocatalytic properties. Journal of Physicas Chemistry C, 2014, 118,29777−29787.(4) Perfect, sectorial, branched Sb2O3 microstructures consisting of prolate microtubes:controllable seeded growth synthesis and optical properties. Crystal Growth Design,2012, 12, 764-770.(5) Co(II)–grafted Ag3PO4 photocatalysts with unexpected photocatalytic ability: Enhanced photogenerated charge separation efficiency, photocatalytic mechanism andactivity. Journal of Hazardous Materials, 2015, 293, 72-80.(6) Super-high photocatalytic activity, stability and improved photocatalyticmechanism of monodisperse AgBr doped with In. Journal of Hazardous Materials,2015, 299, 570-576.(7) A simple mechanical mixing method for preparation of visible-light-sensitiveNiO–CaO composite photocatalysts with high photocatalytic activity. Journal ofHazardous Materials, 2010, 174, 563-566.(8) Synthesis of rhodium phosphide cocatalyst and remarkably enhancedphotocatalytic hydrogen evolution over CdS under visible light radiation. ChemicalEngineering Journal, 2017, 314, 498–507.(9) Synthesis and photocatalytic property of a new silver thiocyanate semiconductor,Chemical Engineering Journal, 2014, 243, 24–30.(10) The synthesis of monodisperse silver chloride nanospheres with super-highphotocatalytic activity and comparative study, Chemical Engineering Journal, 2014,240, 548–553.(11) One-step synthesis of composite semiconductor AgBr/Ag5P3O10 heterojunctionsand their photocatalytic activity, kinetic analysis, photocatalytic mechanism undervisible light radiation, Chemical Engineering Journal, 2013, 214, 336-342.(12) Controlled synthesis and optical properties of 1D frog egg-like Mn(IO3)2/MnO2composite nanostructures with ultra-high aspect ratio. Chemical EngineeringJournal, 2012, 187, 385-390.(13) Antimony trioxide microstructures: 3D grass-like architectures and opticalproperties. Chemical Engineering Journal, 2012, 179, 404-411.(14) A metal-free and graphitic carbon nitride sonocatalyst with high sonocatalyticactivity for degradation methylene blue. Chemical Engineering Journal, 2012, 184,256-260.(15) Hydrothermal synthesis and highly visible light-induced photocatalytic activityof zinc-doped cadmium selenide photocatalysts. Chemical Engineering Journal,2011, 166, 779-782.(16) Synthesis of sulphur doped bismuth selenide photocatalysts by the solvothermalmethod and their photocatalytic activities under visible-light irradiation. ChemicalEngineering Journal, 2011, 171, 1454-1457.(17) Sonocatalytic degradation of amaranth catalyzed by La3+-doped TiO2 underultrasonic irradiation. Ultrasonics Sonochemistry, 2011, 18, 1057-1061.(18) Sonocatalytic performance of Tb7O12/TiO2 composite under ultrasonic irradiation.Ultrasonics Sonochemistry, 2011, 18, 713-717.(19) Porous BiOI sonocatalysts: hydrothermal synthesis, characterization,sonocatalytic, and kinetic properties. Industry Engineering Chemistry Research, 2012, 51, 1193-1197.(20) One-step synthesis, growth mechanism, and optical properties of 3D YIO3hollow microspheres consisting of nanotube arrays, Powder Technology, 2013, 235,712-716.


教育背景:

2002 年 8 月至今,天津工业大学环境科学与工程学院工作;2004 年 9 月至 2007 年 6 月,南开大学化学学院材料化学系学习,获博士学位。

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