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Non-precious co-catalysts boost the performance of TiO_2 hierarchical hollow mesoporous spheres in solar fuel cells

机译:非贵金属助催化剂可提高TiO_2分层中空介孔球在太阳能电池中的性能

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摘要

A main challenge hindering the development of efficient solar fuel cell systems is the identification of robust, cost-effective, and abundant catalysts. Herein, we demonstrate the ability to synthesize photoactive, relatively cheap and abundant catalyst for the solar-assisted water splitting. The proposed catalyst is a composite of Co-Cu/graphene immobilized on hierarchical hollow mesoporous Titania. Diffuse Reflectance analysis showed visible light absorption for (Co-Cu) (2%)-TiO2/RGO with an estimated band gap of 2.41 eV, as compared to 3.13 eV for Titania. Photoluminescence spectra showed a significant decreasing in recombination rate of photogenerated electron-hole pair for (Co-Cu) (2%)-TiO2/RGO nanocomposites. Upon their use as photoanodes in solar fuel cells, the fabricated nanocomposites show 14-fold increase in photocurrent density compared to Titania. This enhancement was confirmed via the measurement of electron and phonon life times. The results attained in this study demonstrate a step toward using non-precious co-catalysts to boost the performance of photocatalysts in solar fuel cells. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:阻碍开发高效太阳能燃料电池系统的主要挑战是确定坚固,经济高效且丰富的催化剂。本文中,我们证明了能够合成光活性的,相对便宜的和丰富的用于太阳能辅助水分解的催化剂的能力。提出的催化剂是固定在分级中空介孔二氧化钛上的Co-Cu /石墨烯的复合材料。漫反射分析显示(Co-Cu)(2%)-TiO2 / RGO的可见光吸收,估计带隙为2.41 eV,而Titania为3.13 eV。光致发光光谱表明,(Co-Cu)(2%)-TiO2 / RGO纳米复合材料的光生电子-空穴对的复合率显着降低。当将其用作太阳能电池中的光阳极时,与二氧化钛相比,制成的纳米复合材料的光电流密度提高了14倍。通过电子和声子寿命的测量证实了这种增强。这项研究中获得的结果表明,朝着使用非贵重的助催化剂提高太阳能电池中光催化剂的性能迈出了一步。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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