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用于太阳能驱动光化学电池的具有高效光管理的透明堆叠光阳极

Transparent Stacked Photoanodes with Efficient Light Management for Solar-Driven Photoelectrochemical Cells.

作者信息

Nguyen Thanh Tai, Patel Malkeshkumar, Kim Sangho, Dao Vinh-Ai, Kim Joondong

机构信息

Future Materials & Devices Lab., Institute of Fundamental and Applied Sciences, Duy Tan University, Ho Chi Minh City 700000, Vietnam.

Faculty of Electrical-Electronic Engineering, Duy Tan University, Da Nang 550000, Vietnam.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 3;13(8):10181-10190. doi: 10.1021/acsami.0c21405. Epub 2021 Feb 22.

DOI:10.1021/acsami.0c21405
PMID:33617239
Abstract

Solar-driven hydrogen generation is one of the most promising approaches for building a sustainable energy system. Photovoltaic-assisted photoanodes can help to reduce the overpotential of water splitting in photoelectrochemical (PEC) cells. Transparent photoanodes can improve light-conversion efficiency by absorbing high-energy photons while transmitting lower energy photons to the photocathode for hydrogen production. In this work, transparent photoanodes were implemented by forming metal-oxide junctions of NiO/TiO heterostructures for creating the photovoltaic effect. The photovoltaic-induced transparent photoelectrode (PTPE) provides the photovoltage (0.7 V), which efficiently reduces the onset potential voltage by -0.38 V versus the reversible hydrogen electrode (RHE), as compared to 0.17 V versus RHE for a single-TiO photoanode. The PEC cell has a high photocurrent of 1.68 mA at 1.23 V with respect to the RHE. The chemical endurance of metal-oxides maintains the stability of the PTPE for over 100 h in an alkaline electrolyte of 0.1 M KOH. The results of this study reveal that combining multiple PTPE cells to create a stacked photoanode enhances the photocurrent roughly in proportion to the number of PTPE cells. This design scheme for optimizing the light-conversion efficiency in a PTPE-photoanode system is promising for creating robust systems for on-site energy producers.

摘要

太阳能驱动制氢是构建可持续能源系统最具前景的方法之一。光伏辅助光阳极有助于降低光电化学(PEC)电池中水电解的过电位。透明光阳极可以通过吸收高能光子,同时将低能光子传输到光阴极用于制氢,从而提高光转换效率。在这项工作中,通过形成NiO/TiO异质结构的金属氧化物结来实现透明光阳极,以产生光伏效应。光伏诱导透明光电极(PTPE)提供光电压(0.7 V),与单个TiO光阳极相对于可逆氢电极(RHE)的0.17 V相比,它能有效地将起始电位电压相对于RHE降低-0.38 V。该PEC电池在相对于RHE为1.23 V时具有1.68 mA的高光电流。金属氧化物的化学耐久性使PTPE在0.1 M KOH碱性电解液中保持超过100小时的稳定性。本研究结果表明,将多个PTPE电池组合以创建堆叠式光阳极,光电流大致与PTPE电池的数量成比例增加。这种用于优化PTPE光阳极系统中光转换效率的设计方案,对于创建强大的现场能源生产系统具有广阔前景。

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