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调谐带隙CdSe量子点敏化LaB₆增强的光电化学水分解行为

Enhanced Photoelectrochemical Water Splitting Behaviour of Tuned Band Gap CdSe QDs Sensitized LaB₆.

作者信息

Babu M Soban, Sivanantham A, Chakravarthi B Barath, Kannan R Sujith, Panda Subhendu K, Berchmans L John, Arya S B, Sreedhar Gosipathala

出版信息

J Nanosci Nanotechnol. 2017 Jan;17(1):437-42. doi: 10.1166/jnn.2017.12410.

Abstract

We report the fabrication of tuned band gap quantum dots sensitized LaB₆ hybrid nanostructures and their application as a photoanode for photoelectrochemical water splitting. The lanthanum hexaboride (LaB₆) obtained by molten salt electrolysis method is sensitized with different sized CdSe quantum dots, which form a multiple-level hierarchical heterostructure and such design enhance the light absorption and charge carrier separation, which in turn showed higher photocurrent density compared to that of pristine LaB₆. When LaB₆ is sensitized with CdSe quantum dots of different band gaps, which have the absorption in the green and red (530 and 605 nm) regions in visible light, developed a ten times higher photocurrent density (11.0 mA cm(−2)) compared to that of pristine LaB6 (0.5 mA cm(−2) at 0.75 V vs. Ag/AgCl) in 1 M Na₂S electrolyte under illumination. These results prove that the tuned band gap quantum dots sensitized LaB₆ heterostructures are an ideal candidate for a photoanode in solar water splitting applications.

摘要

我们报道了调谐带隙量子点敏化的LaB₆混合纳米结构的制备及其作为光阳极用于光电化学水分解的应用。通过熔盐电解法获得的六硼化镧(LaB₆)用不同尺寸的CdSe量子点进行敏化,形成多级分层异质结构,这种设计增强了光吸收和电荷载流子分离,与原始LaB₆相比,其光电流密度更高。当LaB₆用不同带隙的CdSe量子点敏化时,这些量子点在可见光的绿色和红色(530和605 nm)区域有吸收,在1 M Na₂S电解质中光照下,与原始LaB₆(在0.75 V vs. Ag/AgCl时为0.5 mA cm⁻²)相比,产生的光电流密度高出十倍(11.0 mA cm⁻²)。这些结果证明,调谐带隙量子点敏化的LaB₆异质结构是太阳能水分解应用中光阳极的理想候选材料。

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