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首页> 外文期刊>Angewandte Chemie >A Water-Splitting Carbon Nitride Photoelectrochemical Cell with Efficient Charge Separation and Remarkably Low Onset Potential
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A Water-Splitting Carbon Nitride Photoelectrochemical Cell with Efficient Charge Separation and Remarkably Low Onset Potential

机译:水分解碳氮化物光电化学电池,具有有效的电荷分离,显着低发病潜力

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摘要

A simple method to grow a closely packed carbon nitride (CN) film by the crystallization of CN monomers on a conductive substrate followed by a thermal condensation is reported. The as-synthesized CN exhibits excellent performance as photoanode material in a photoelectrochemical Detailed (photo)electrochemical and transient absorption measurements indicate excellent charge separation properties, high hole-extraction efficiency (up to 50%), a long electron lifetime, and low amount of defect slates below the CN conduction band. Consequently, the CN photoanode exhibits a markedly low overpotential of 0.25 V versus reversible hydrogen electrode (RHE), which is comparable with the state-of-the-art metal-based photoanodes, an impressive photocurrent density of 116 mu A cm(-2) at 1.23 V versus RHE in an alkaline solution without sacrificial agent, as well as excellent stability over a wide pH range (0-13).
机译:报道了一种通过CN单体在导电基板上结晶而生长紧密包装的氮化物(CN)膜的简单方法,然后进行热缩合。 作为合成的CN在光电化学详细(Photo)电化学和瞬态吸收测量中表现出优异的性能作为光电化学和瞬态吸收测量表示优异的电荷分离性能,高空穴提取效率(高达50%),长电子寿命和少量 CN导通带下方的缺陷板岩。 因此,CN PhotoNode表现出0.25V的显着低的过电位,与可逆氢电极(RHE)相当,其与最先进的金属基光池相当,令人印象深刻的光电流密度为116亩(-2) )在没有牺牲剂的碱性溶液中,在碱性溶液中的1.23V与RHE相比,以及在宽pH范围内的优异稳定性(0-13)。

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