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金属 SrNbO 中非化学计量比晶界处的电子和等离子体现象。

Electronic and plasmonic phenomena at nonstoichiometric grain boundaries in metallic SrNbO.

作者信息

Song Dongsheng, Wan Dongyang, Wu Hong-Hui, Xue Deqing, Ning Shoucong, Wu Ming, Venkatesan Thirumalai, Pennycook Stephen J

机构信息

Department of Materials Science and Engineering, National University of Singapore, Singapore 117575.

出版信息

Nanoscale. 2020 Mar 28;12(12):6844-6851. doi: 10.1039/c9nr10221c. Epub 2020 Mar 18.

Abstract

Grain boundaries could exhibit exceptional electronic structure and exotic properties, which are determined by a local atomic configuration and stoichiometry that differs from the bulk. However, optical and plasmonic properties at the grain boundaries in metallic oxides have rarely been discussed before. Here, we show that non-stoichiometric grain boundaries in the newly discovered metallic SrNbO photocatalyst show exotic electronic, optical and plasmonic phenomena in comparison to bulk. Aberration-corrected scanning transmission electron microscopy and first-principles calculations reveal that a Nb-rich grain boundary exhibits an increased carrier concentration with quasi-1D metallic conductivity, and newly induced electronic states contributing to the broad energy range of optical absorption. More importantly, dielectric function calculations reveal extended and enhanced plasmonic excitations compared with bulk SrNbO. Our results show that non-stoichiometric grain boundaries might be utilized to control the electronic and plasmonic properties in oxide photocatalysis.

摘要

晶界可能展现出特殊的电子结构和奇异特性,这些特性由不同于体相的局部原子构型和化学计量比所决定。然而,此前金属氧化物中晶界处的光学和等离子体特性鲜有讨论。在此,我们表明,新发现的金属SrNbO光催化剂中的非化学计量比晶界与体相相比呈现出奇异的电子、光学和等离子体现象。像差校正扫描透射电子显微镜和第一性原理计算表明,富Nb晶界表现出增加的载流子浓度并具有准一维金属导电性,且新诱导的电子态有助于拓宽光吸收的能量范围。更重要的是,与体相SrNbO相比,介电函数计算揭示了扩展且增强的等离子体激发。我们的结果表明,非化学计量比晶界可用于控制氧化物光催化中的电子和等离子体特性。

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