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钙钛矿光伏集成 CdS/TiO 光阳极用于无偏光电化学制氢。

Perovskite Photovoltaic Integrated CdS/TiO Photoanode for Unbiased Photoelectrochemical Hydrogen Generation.

出版信息

ACS Appl Mater Interfaces. 2018 Jul 18;10(28):23766-23773. doi: 10.1021/acsami.8b04855. Epub 2018 Jul 3.

Abstract

Photoelectrolysis of water using solar energy into storable and environment-friendly chemical fuel in the form of hydrogen provides a potential solution to address the environmental concerns and fulfill future energy requirements in a sustainable manner. Achieving efficient and spontaneous hydrogen evolution in water using solar light as the only energy input is a highly desirable but a difficult target. In this work, we report perovskite solar cell integrated CdS-based photoanode for unbiased photoelectrochemical hydrogen evolution. An integrated tandem device consisting of mesoporous CdS/TiO photoanode paired with a triple-cation perovskite (Cs(MAFA)Pb(IBr)) solar cell is developed via a facile fabrication route. The proposed photovoltaic integrated photoanode presents an efficient tandem configuration with high optical transparency to long-wavelength photons and strong photoelectrochemical conversions from short-wavelength photons. On the basis of this integrated tandem device, an unbiased photocurrent density of 7.8 mA/cm is demonstrated under AM1.5G illumination.

摘要

利用太阳能将水光解为可存储且环保的化学燃料氢气,为以可持续的方式解决环境问题和满足未来能源需求提供了一种潜在的解决方案。利用太阳光作为唯一的能量输入,实现水的高效、自发的氢析出是一个非常理想但具有挑战性的目标。在这项工作中,我们报告了一种基于钙钛矿太阳能电池的 CdS 光阳极,用于无偏光电化学制氢。通过简单的制备工艺,开发了一种由介孔 CdS/TiO 光阳极与三阳离子钙钛矿(Cs(MAFA)Pb(IBr))太阳能电池组成的集成串联器件。所提出的光伏集成光阳极具有高效的串联结构,对长波长光子具有高光学透明度,并能实现从短波长光子的强光电化学转换。基于这个集成的串联器件,在 AM1.5G 光照下,实现了 7.8 mA/cm 的无偏光电流密度。

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