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具有改善的太阳能吸收和增强的光催化活性的黑色五氧化二铌纳米棒。

Black Nb2O5 nanorods with improved solar absorption and enhanced photocatalytic activity.

作者信息

Zhao Wenli, Zhao Wei, Zhu Guilian, Lin Tianquan, Xu Fangfang, Huang Fuqiang

机构信息

CAS Key Laboratory of Materials for Energy Conversion, Shanghai Institute of Ceramics, Chinese Academy of Sciences (CAS), Shanghai 200050, P.R. China.

State Key Laboratory of High Performance Ceramics and Superfine Microstructures, Shanghai Institute of Ceramics, Chinese Academy of Sciences (CAS), Shanghai 200050, P.R. China.

出版信息

Dalton Trans. 2016 Mar 7;45(9):3888-94. doi: 10.1039/c5dt04578a.

Abstract

Black titania, with greatly improved solar absorption, has demonstrated its effectiveness in photocatalysis and photoelectrochemical cells (PEC), inspiring us to explore the blackening of other wide band-gap oxide materials for enhanced performance. Herein, we report the fabrication of black, reduced Nb2O5 nanorods (r-Nb2O5), with active exposed (001) surfaces, and their enhanced photocatalytic and PEC properties. Black r-Nb2O5 nanorods were obtained via reduction of pristine Nb2O5 by molten aluminum in a two-zone furnace. Unlike the black titania, r-Nb2O5 nanorods are well-crystallized, without a core-shell structure, which makes them outstanding in photocatalytic stability. Substantial Nb(4+) cation and oxygen vacancies (VO) were introduced into r-Nb2O5, resulting in the enhanced absorption in both the visible and near-infrared regions and improved charge separation and transport capability. The advantage of the r-Nb2O5 was also proved by its more efficient photoelectrochemical performance (138 times at 1.23 VRHE) and higher photocatalytic hydrogen-generation activity (13 times) than pristine Nb2O5. These results indicate that black r-Nb2O5 is a promising material for PEC application and photocatalysis.

摘要

黑色二氧化钛具有大大提高的太阳能吸收能力,已在光催化和光电化学电池(PEC)中证明了其有效性,这激发我们探索其他宽带隙氧化物材料的黑化以提高性能。在此,我们报告了具有活性暴露(001)表面的黑色还原五氧化二铌纳米棒(r-Nb2O5)的制备及其增强的光催化和PEC性能。黑色r-Nb2O5纳米棒是通过在两区炉中用熔融铝还原原始五氧化二铌而获得的。与黑色二氧化钛不同,r-Nb2O5纳米棒结晶良好,没有核壳结构,这使其在光催化稳定性方面表现出色。大量的Nb(4+)阳离子和氧空位(VO)被引入到r-Nb2O5中,导致在可见光和近红外区域的吸收增强,以及电荷分离和传输能力提高。r-Nb2O5的优势还体现在其比原始五氧化二铌更高效的光电化学性能(在1.23 VRHE下为138倍)和更高的光催化产氢活性(13倍)。这些结果表明,黑色r-Nb2O5是一种有前途用于PEC应用和光催化的材料。

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