首页> 外文期刊>RSC Advances >Novel SrTiO3/NaTaO3 and visible-light-driven SrTiO3/NaTaO3:N nano-heterojunctions with high interface-lattice matching for efficient photocatalytic removal of organic dye
【24h】

Novel SrTiO3/NaTaO3 and visible-light-driven SrTiO3/NaTaO3:N nano-heterojunctions with high interface-lattice matching for efficient photocatalytic removal of organic dye

机译:具有高界面晶格匹配的新型SrTiO3 / NaTaO3和可见光驱动的SrTiO3 / NaTaO3:N纳米异质结,可有效光催化去除有机染料

获取原文
获取外文期刊封面目录资料

摘要

SrTiO _(3) /NaTaO _(3) (STO/NTO) heterojunction photocatalysts were successfully constructed by decorating NaTaO _(3) nanocubes with SrTiO _(3) nanoparticles via a hydrothermal method. The structure of the perovskites NaTaO _(3) and SrTiO _(3) bear some resemblance to each other, which increases the interface lattice match for promoting the migration of photogenerated carriers between the STO/NTO interfaces. In comparison to pristine NaTaO _(3) and SrTiO _(3) samples, the STO/NTO composites exhibited remarkably improved capacity for the degradation of rhodamine B (RhB) under ultraviolet (UV) light ( λ < 400 nm) irradiation. Furthermore, the partial replacement of O ~(2?) by N ~(3?) in the TaO _(6) octahedron narrowed the band gap of NaTaO _(3) , which significantly enhanced the photocatalytic performance of the SrTiO _(3) /NaTaO _(3) :N (STO/NTON) heterojunction under visible light ( λ > 400 nm). Finally, the possible band structures of the STO/NTO and STO/NTON photocatalysts were proposed, which indicated that an n–n type heterojunction was constructed with a staggered gap for fast separation of photogenerated electron–hole pairs.
机译:SrTiO _(3)/ NaTaO _(3)(STO / NTO)异质结光催化剂是通过水热法用SrTiO _(3)纳米粒子修饰NaTaO _(3)纳米立方体而成功构建的。钙钛矿NaTaO_(3)和SrTiO_(3)的结构彼此相似,这增加了界面晶格匹配,从而促进了STO / NTO界面之间光生载流子的迁移。与原始NaTaO_(3)和SrTiO_(3)样品相比,STO / NTO复合材料在紫外(UV)光(λ<400 nm)辐照下,对若丹明B(RhB)的降解能力具有显着提高。此外,在TaO _(6)八面体中用N〜(3?)部分取代O〜(2?)缩小了NaTaO _(3)的带隙,从而显着增强了SrTiO _(3)的光催化性能。 )/ NaTaO _(3):N(STO / NTON)异质结在可见光(λ> 400 nm)下。最后,提出了STO / NTO和STO / NTON光催化剂的可能的能带结构,这表明构造了具有交错间隙的n-n型异质结,可以快速分离光生电子-空穴对。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号