期刊信息
  • 主管单位:
  • 上海市科学技术协会
  • 主办单位:
  • 上海有色金属学会
    上海理工大学
  • 名誉主编:
  • 陈兴章
  • 主    编:
  • 刘平
  • 地    址:
  • 上海市军工路516号
  • 邮政编码:
  • 200093
  • 联系电话:
  • (86)021-55781550
  • 电子邮件:
  • nmme@usst.edu.cn
  • 国际标准刊号:
  • 2096-2983
  • 国内统一刊号:
  • 31-2125/TF
  • 单    价:
  • 8.00
  • 定    价:
  • 60.00
黄鹤,徐京城.氨化改性Sr2Ta2O7/SrTa4O11光催化剂用于光电催化性能研究[J].有色金属材料与工程,2022,43(2):30-35.
氨化改性Sr2Ta2O7/SrTa4O11光催化剂用于光电催化性能研究
Study on photoelectrocatalysis performance of ammonia-modified Sr2Ta2O7/SrTa4O11 photocatalysts
  
DOI:10.13258/j.cnki.nmme.2022.02.004
中文关键词:  钽酸锶同素异质结  氮掺杂  可见光  光电流响应
英文关键词:strontium tantalate allotropic heterojunction  nitrogen doping  visible light  photocurrent response
基金项目:上海理工大学医工交叉项目(21ZR1444200);国家自然科学基金青年科学基金项目(51602197)
作者单位E-mail
黄鹤 上海理工大学 材料与化学学院,上海 200093  
徐京城 上海理工大学 材料与化学学院,上海 200093 jchxu@usst.edu.cn 
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中文摘要:
      以钽酸锶同素异质结Sr2Ta2O7/SrTa4O11(STO)为原始材料,采用高温氨化法对原始材料做氮掺杂改性处理,得到了新型氮掺杂钽酸锶同素异质结材料Sr2Ta2O7-xNx/SrTa4O11-xNx(STO-N),并对其光电催化性能进行研究。结果显示,对比改性前的STO,STO-N具有更强的可见光吸收能力。紫外可见漫反射光谱证明,氮掺杂使得STO的吸收阈值从319 nm红移到485 nm,相应的带隙由3.97 eV减小到2.51 eV,这主要是由于N 2p和O 2p轨道的混合作用导致价带顶部上移。性能测试结果表明:STO-N20的光电催化性能提升最为显著,在施加0.7 V偏压下,STO-N20电极测得的光电流密度达到了570 nA/cm2,是STO电极的光电流密度(8.6 nA/cm2)的66倍。根据推算出的STO及STO-N20的能带结构可知,STO-N20性能提升的原因是禁带宽度变窄。
英文摘要:
      Using the strontium tantalate allotropic heterojunction Sr2Ta2O7/SrTa4O11(STO) as the original material, a new type of nitrogen-doped strontium tantalate allotropic heterojunction material Sr2Ta2O7-xNx/SrTa4O11-xNx(STO-N) was obtained by high temperature ammonia modification of the original material, and its photoelectrocatalysis performance was studied. The result shows that compared with STO, STO-N shows a stronger visible light absorption capacity. UV-vis DRS result certifies that nitrogen doping makes absorption threshold of the compound redshift from 319 nm to 485 nm, and the corresponding band gap reduces from 3.97 eV to 2.51 eV, which is mainly due to the upward shift of the valence band top caused by the mixing effect of N 2p and O 2p orbitals. The performance test results show that the photocatalytic performance of STO-N20 is improved the most significantly. Under the bias voltage of 0.7 V, the photocurrent density measured by STO-N20 electrode reaches 570 nA/cm2, which is 66 times that of STO electrode (8.6 nA/cm2). According to the calculated energy band structures of STO and STO-N20, the reason for the improvement of STO-N20 performance is the narrowing of the band gap.
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