微/纳复合型可见光光电材料Ag-石墨烯-TiO2的制备及应用
Electrospun Fibrous Ag-Graphene-TiO2 with Enhanced Photocurrent Response under Visible-Light Illumination
作者单位E-mail
王翠娥 安徽工程大学纺织服装学院, 芜湖 241000 wangcuie@ahpu.edu.cn 
王宁 安徽工程大学纺织服装学院, 芜湖 241000  
刘新华 安徽工程大学纺织服装学院, 芜湖 241000  
摘要: 基于静电纺丝技术构筑了稳定均一的Ag-石墨烯-TiO2纳米复合纤维;并利用SEM、TEM、XRD、EDS和Raman等表征了材料的微观结构与组分;随后,我们研究了该复合纤维在可见光下的光电转换性能。结果表明:掺杂既可降低TiO2材料的禁带宽度,也能减缓光生电子与空穴的复合淬灭;Ag纳米晶的局域等离激元可增强纤维对可见光的吸收,石墨烯能促进光生电子与空穴的有效分离;可见光条件下,相比较于单一的TiO2纳米纤维,复合纤维的光电流密度提高4倍,达到0.81μA·cm-2
关键词: 静电纺丝  TiO2  Ag  石墨烯  光电转换
基金项目: 国家自然科学基金(No.21302001)、安徽省高校优秀青年人才支持计划重点项目(No.gxyqZD2016119)和安徽工程大学中青年拔尖人才项目(No.2016BJRC013)资助。
Abstract: A highly-uniform nanofiber of Ag-graphene-TiO2 was successfully fabricated by the electrospinning technique, which exhibited significantly increased visible light absorption (λ > 420 nm) and improved photocurrent response. The Ag nanoparticles (AgNPs) and graphenes located in TiO2 fibers induced an increase in the visible-light photocurrent response. The photocurrent density of Ag-graphene-TiO2 fibers is 4-fold higher than the pristine TiO2 fibers under visible light. The increased photocurrent response in visible light region is resulted from the strong interaction between TiO2 fibers and graphene sheets, as well as the localized surface plasmon resonance of AgNPs.
Keywords: electrospinning  TiO2  Ag  graphene  photocurrent
投稿时间:2017-03-01 修订日期:2017-07-03
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王翠娥,王宁,刘新华.微/纳复合型可见光光电材料Ag-石墨烯-TiO2的制备及应用[J].无机化学学报,2017,33(9):1618-1624.
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