Yu Weilai, Buabthong Pakpoom, Young James L, Ifkovits Zachary P, Byrne Sean T, Steiner Myles A, Deutsch Todd G, Lewis Nathan S
Chemistry and Nanoscience Center, National Renewable Energy Laboratory, Golden, Colorado 80401, United States.
Beckman Institute, California Institute of Technology, Pasadena, California 91125, United States.
ACS Appl Mater Interfaces. 2022 Jun 15;14(23):26622-26630. doi: 10.1021/acsami.2c01845. Epub 2022 Jun 6.
The long-term stability for the hydrogen-evolution reaction (HER) of homojunction pn-GaInP photocathodes (band gap = 1.8 eV) with an electrodeposited Pt catalyst (pn-GaInP/Pt) has been systematically evaluated in both acidic and alkaline electrolytes. Electrode dissolution during chronoamperometry was correlated with changes over time in the current density-potential (-) behavior to reveal the underlying failure mechanism. Pristine pn-GaInP/Pt photocathodes yielded an open-circuit photopotential () as positive as >1.0 V vs the potential of the reversible hydrogen electrode (RHE) and a light-limited current density () of >12 mA cm (1-sun illumination). However, and gradually degraded at either pH 0 or pH 14. The performance degradation was attributed to three different failure modes: (1) gradual thinning of the n-emitter layer due to GaInP dissolution in acid; (2) active corrosion of the underlying GaAs substrate at positive potentials causing delamination of the upper GaInP epilayers; and (3) direct GaAs/electrolyte contact compromising the operational stability of the device. This work reveals the importance of both substrate stability and structural integrity of integrated photoelectrodes toward stable solar fuel generation.
通过电沉积铂催化剂(pn-GaInP/Pt)制备的同质结pn-GaInP光阴极(带隙 = 1.8 eV)在酸性和碱性电解质中对析氢反应(HER)的长期稳定性进行了系统评估。计时电流法期间的电极溶解与电流密度-电位(-)行为随时间的变化相关,以揭示潜在的失效机制。原始的pn-GaInP/Pt光阴极产生的开路光电势()相对于可逆氢电极(RHE)的电位正向高达>1.0 V,光限制电流密度()>12 mA cm(1个太阳光照)。然而,在pH 0或pH 14时,和逐渐退化。性能下降归因于三种不同的失效模式:(1)由于GaInP在酸中溶解导致n发射极层逐渐变薄;(2)在正电位下底层GaAs衬底的活性腐蚀导致上层GaInP外延层分层;(3)直接的GaAs/电解质接触损害了器件的运行稳定性。这项工作揭示了集成光电极的衬底稳定性和结构完整性对于稳定太阳能燃料生成的重要性。