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Efficient Water-Splitting Device Based on a Bismuth Vanadate Photoanode and Thin-Film Silicon Solar Cells

机译:基于钒酸铋光电阳极和薄膜硅太阳能电池的高效水分解装置

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摘要

A hybrid photovoltaic/photoelectrochemical (PV/PEC) water-splitting device with a benchmark solar-to-hydrogen conversion efficiency of 5.2 % under simulated air mass (AM) 1.5 illumination is reported. This cell consists of a gradient-doped tungsten–bismuth vanadate (W:BiVO_4) photoanode and a thin-film silicon solar cell. The improvement with respect to an earlier cell that also used gradient-doped W:BiVO4 has been achieved by simultaneously introducing a textured substrate to enhance light trapping in the BiVO4 photoanode and further optimization of the W gradient doping profile in the photoanode. Various PV cells have been studied in combination with this BiVO_4 photoanode, such as an amorphous silicon (a-Si:H) single junction, an a-Si:H/a-Si:H double junction, and an a-Si:H/nanocrystalline silicon (nc-Si:H) micromorph junction. The highest conversion efficiency, which is also the record efficiency for metal oxide based water-splitting devices, is reached for a tandem system consisting of the optimized W:BiVO_4 photoanode and the micromorph (a-Si:H/nc-Si:H) cell. This record efficiency is attributed to the increased performance of the BiVO_4 photoanode, which is the limiting factor in this hybrid PEC/PV device, as well as better spectral matching between BiVO_4 and the nc-Si:H cell.
机译:据报道,在模拟空气质量(AM)1.5照度下,太阳能/氢气混合光解水装置的基准太阳能到氢气的转换效率为5.2%。该电池由梯度掺杂的钨酸钒铋(W:BiVO_4)光电阳极和薄膜硅太阳能电池组成。通过同时引入纹理化衬底以增强BiVO4光电阳极中的光俘获以及进一步优化光电阳极中的W梯度掺杂轮廓,已实现了对也使用梯度掺杂W:BiVO4的早期电池的改进。结合此BiVO_4光电阳极已研究了各种PV电池,例如非晶硅(a-Si:H)单结,a-Si:H / a-Si:H双结和a-Si:H /纳米晶硅(nc-Si:H)微晶结。对于由优化的W:BiVO_4光电阳极和微晶型物(a-Si:H / nc-Si:H)组成的串联系统,可以达到最高的转换效率,这也是基于金属氧化物的水分解装置的创纪录效率。细胞。该记录效率归因于BiVO_4光电阳极性能的提高,这是此混合PEC / PV器件的限制因素,以及BiVO_4与nc-Si:H电池之间更好的光谱匹配。

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