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Development of Thin Film Amorphous Silicon Tandem Junction Based Photocathodes Providing High Open-Circuit Voltages for Hydrogen Production

机译:薄膜非晶硅串联结的光电阴极的开发提供高的开路电压用于制氢

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摘要

Hydrogenated amorphous silicon thin film tandem solar cells (a-Si:H/a-Si:H) have been developed with focus on high open-circuit voltages for the direct application as photocathodes in photoelectrochemical water splitting devices. By temperature variation during deposition of the intrinsic a-Si:H absorber layers the band gap energy of a-Si:H absorber layers, correlating with the hydrogen content of the material, can be adjusted and combined in a way that a-Si:H/a-Si:H tandem solar cells provide open-circuit voltages up to 1.87 V. The applicability of the tandem solar cells as photocathodes was investigated in a photoelectrochemical cell (PEC) measurement set-up. With platinum as a catalyst, the a-Si:H/a-Si:H based photocathodes exhibit a high photocurrent onset potential of 1.76 V versus the reversible hydrogen electrode (RHE) and a photocurrent of 5.3 mA/cm2 at 0 V versus RHE (under halogen lamp illumination). Our results provide evidence that a direct application of thin film silicon based photocathodes fulfills the main thermodynamic requirements to generate hydrogen. Furthermore, the presented approach may provide an efficient and low-cost route to solar hydrogen production.
机译:已经开发了氢化非晶硅薄膜串联太阳能电池(a-Si:H / a-Si:H),其重点是高开路电压,可直接用作光电化学水分解装置中的光阴极。通过本征a-Si:H吸收层的沉积过程中的温度变化,可以调整和组合与材料的氢含量相关的a-Si:H吸收层的带隙能,从而使a-Si: H / a-Si:H串联太阳能电池提供高达1.87 V的开路电压。在光电化学电池(PEC)测量设置中研究了串联太阳能电池作为光阴极的适用性。使用铂作为催化剂,基于a-Si:H / a-Si:H的光电阴极相对于可逆氢电极(RHE)表现出1.76 V的高光电流起始电势,相对于RHE在0 V时的光电流为5.3 mA / cm2 (在卤素灯照明下)。我们的结果提供了证据,证明直接应用薄膜硅基光电阴极可以满足产生氢的主要热力学要求。此外,所提出的方法可以提供生产太阳能氢的有效且低成本的途径。

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