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Current Doubling effect revisited: Current multiplication in a PhotoFuelCell

机译:重现当前倍增效果:PhotoFuelCell中的当前倍增

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摘要

Current Doubling effect is the current multiplication due to the formation of unstable radicals followed by electron injection into the conduction band of a photocatalyst in a photoelectrochemical cell functioning in the presence of sacrificial agents. When other causes of current increase are present, it is difficult to separate current increase due to pure Current Doubling. Especially, in the case of nanostructured semiconductor photocatalysts, the presence of sacrificial agents leads to current increase by scavenging holes and thus suppressing electron-hole recombination. This matter has been studied in the present work by monitoring the current flowing in a PhotoFuelCell, i.e. in a photoelectrochemical cell functioning in the presence of an organic sacrificial agent acting as "fuel". Three biomass-derivable model fuels have been examined, namely, ethanol, glycerol and xylitol. Current Doubling was clearly demonstrated in the case of ethanol where the photocurrent efficiency reached values higher than 100%. (C) 2015 Elsevier B.V. All rights reserved.
机译:电流加倍效应是电流的倍增,这是由于不稳定自由基的形成,随后电子在存在牺牲剂的情况下在光电化学电池中注入光催化剂的导带中。当电流增加的其他原因存在时,由于纯电流加倍,很难分开电流增加。特别地,在纳米结构的半导体光催化剂的情况下,牺牲剂的存在通过清除空穴并因此抑制电子-空穴复合而导致电流增加。在本工作中,已经通过监测在光电燃料电池中,即在存在作为“燃料”的有机牺牲剂的情况下起作用的光电化学电池中的电流来研究此问题。已经研究了三种生物质衍生的模型燃料,即乙醇,甘油和木糖醇。在乙醇中光电流效率达到高于100%的值时,电流倍增得到了明显证明。 (C)2015 Elsevier B.V.保留所有权利。

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