首页> 外文OA文献 >Optimization for visible light photocatalytic water splitting: Gold-coated and surface-textured TiO2 inverse opal nano-networks
【2h】

Optimization for visible light photocatalytic water splitting: Gold-coated and surface-textured TiO2 inverse opal nano-networks

机译:可见光光催化水分解的优化:镀金和表面纹理化的TiO2反蛋白石纳米网络

摘要

A gold nanoparticle-coated and surface-textured TiO2 inverse opal (Au/st-TIO) structure that provides a dramatic improvement of photoelectrochemical hydrogen generation has been fabricated by nano-patterning of TiO2 precursors on TiO2 inverse opal (TIO) and subsequent deposition of gold NPs. The surface-textured TiO2 inverse opal (st-TIO) maximizes the photon trapping effects triggered by the large dimensions of the structure while maintaining the adequate surface area achieved by the small dimensions of the structure. Au NPs are incorporated to further improve photoconversion efficiency in the visible region via surface plasmon resonance. st-TIO and Au/st-TIO exhibit a maximum photocurrent density of ∼0.58 mA cm-2 and ∼0.8 mA cm-2, which is 2.07 and 2.86 times higher than that of bare TIO, respectively, at an applied bias of +0.5 V versus an Ag/AgCl electrode under AM 1.5 G simulated sunlight illumination via a photocatalytic hydrogen generation reaction. The excellent performance of the surface plasmon-enhanced mesoporous st-TIO structure suggests that tailoring the nanostructure to proper dimensions, and thereby obtaining excellent light absorption, can maximize the efficiency of a variety of photoconversion devices.
机译:通过在TiO2反蛋白石(TIO)上对TiO2前驱体进行纳米构图并随后沉积TiO2,制得了金纳米粒子涂层且表面纹理化的TiO2反蛋白石(Au / st-TIO)结构,可显着改善光电化学氢的产生。金纳米颗粒。表面纹理化的TiO2反蛋白石(st-TIO)可最大程度地提高结构的大尺寸引发的光子俘获效果,同时保持结构的小尺寸实现的足够表面积。掺入金纳米颗粒以通过表面等离子体激元共振进一步提高可见光区域的光转换效率。 st-TIO和Au / st-TIO的最大光电流密度分别为〜0.58 mA cm-2和〜0.8 mA cm-2,分别是裸TIO的2.07和2.86倍,施加的偏压为+通过光催化制氢反应,在AM 1.5 G模拟阳光照射下,相对于Ag / AgCl电极为0.5V。表面等离激元增强的介孔st-TIO结构的出色性能表明,将纳米结构调整为合适的尺寸,从而获得出色的光吸收,可以使各种光转换器件的效率最大化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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