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超薄 Ba5Nb4O15 二维纳米片的增强光催化活性。

Enhanced Photocatalytic Activity of Ultrathin Ba5Nb4O15 Two-Dimensional Nanosheets.

机构信息

Department of Materials Science and Engineering, Seoul National University , Seoul 151-744, South Korea.

Department of Materials Science and Engineering, and Department of Energy Systems Research, Ajou University , Suwon 443-749, South Korea.

出版信息

ACS Appl Mater Interfaces. 2015 Oct 7;7(39):21860-7. doi: 10.1021/acsami.5b06281. Epub 2015 Sep 28.

Abstract

Anisotropic two-dimensional (2D) nanosheets of the layered perovskite, Ba5Nb4O15, with thicknesses of 5-10 nm and lateral sizes of 300-1200 nm, were synthesized by a hydrothermal route. The influences of the 2D morphology of the material on the crystal and electronic structures, light absorption properties, and photocatalytic activity were investigated. The ultrathin nanosheets showed much-enhanced photocatalytic activity compared to both thick nanosheets (∼30 nm) and micrometer-sized particles for the evolution of H2 from water splitting under UV light illumination. This enhanced activity is predominantly attributed to the larger surface area, higher optical absorption, and charge separation ability of the 2D nanosheet, which results from the variation of the local crystal structure arising from the ultrathin morphology of the Ba5Nb4O15.

摘要

具有 5-10nm 厚度和 300-1200nm 横向尺寸的层状钙钛矿二维(2D)纳米片 Ba5Nb4O15 通过水热法合成。研究了材料的 2D 形态对晶体和电子结构、光吸收性能和光催化活性的影响。与厚纳米片(约 30nm)和微米级颗粒相比,超薄纳米片在紫外光照射下水分解产生 H2 的光催化活性大大提高。这种增强的活性主要归因于 2D 纳米片更大的表面积、更高的光吸收和电荷分离能力,这是由于 Ba5Nb4O15 的超薄形态引起的局部晶体结构的变化。

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