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Rational design of photoelectrodes for photoelectrochemical water splitting and CO_2 reduction

机译:用于光电化学水分解和CO_2还原的光电极的合理设计

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Solar energy has promising potential for building sustainable society. Conversion of solar energy into solar fuels plays a crucial role in overcoming the intermittent nature of the renewable energy source. A photoelectrochemical (PEC) cell that employs semiconductor as photoelectrode to split water into hydrogen or fixing carbon dioxide (CO2) into hydrocarbon fuels provides great potential to achieve zero-carbon-emission society. A proper design of these semiconductor photoelectrodes thus directly influences the performance of the PEC cell. In this review, we investigate the strategies that have been put towards the design of efficient photoelectrodes for PEC water splitting and CO2 reduction in recent years and provide some future design directions toward next-generation PEC cells for water splitting and CO2 reduction.
机译:太阳能具有建设可持续社会的潜力。将太阳能转化为太阳能燃料在克服可再生能源的间歇性方面起着至关重要的作用。使用半导体作为光电极将水分解为氢或将二氧化碳(CO2)固定为烃类燃料的光电化学(PEC)电池具有实现零碳排放社会的巨大潜力。这些半导体光电极的正确设计因此直接影响PEC电池的性能。在这篇综述中,我们研究了近年来用于PEC分解和减少CO2的高效光电极设计的策略,并为下一代PEC分解和减少CO2电池提供了一些未来的设计方向。

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