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Cu2O Photocathode for Low Bias Photoelectrochemical Water Splitting Enabled by NiFe-Layered Double Hydroxide Co-Catalyst

机译:NiFe层双氢氧化物助催化剂的低偏置光电化学水分解的CU2O光电阴极

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Layered double hydroxides (LDHs) are bimetallic hydroxides that currently attract considerable attention as co-catalysts in photoelectrochemical (PEC) systems in view of water splitting under solar light. A wide spectrum of LDHs can be easily prepared on demand by tuning their chemical composition and structural morphology. We describe here the electrochemical growth of NiFe-LDH overlayers on Cu2O electrodes and study their PEC behavior. By using the modified Cu2O/NiFe-LDH electrodes we observe a remarkable seven-fold increase of the photocurrent intensity under an applied voltage as low as -0.2?V vs Ag/AgCl. The origin of such a pronounced effect is the improved electron transfer towards the electrolyte brought by the NiFe-LDH overlayer due to an appropriate energy level alignment. Long-term photostability tests reveal that Cu2O/NiFe-LDH photocathodes show no photocurrent loss after 40?hours of operation under light at -0.2?V vs Ag/AgCl low bias condition. These improved performances make Cu2O/NiFe-LDH a suitable photocathode material for low voltage H2 production. Indeed, after 8?hours of H2 production under -0.2?V vs Ag/AgCl the PEC cell delivers a 78% faradaic efficiency. This unprecedented use of Cu2O/NiFe-LDH as an efficient photocathode opens new perspectives in view of low biasd or self-biased PEC water splitting under sunlight illumination.
机译:分层双氢氧化物(LDH)是双金属氢氧化物,目前在太阳光下的水分裂的视图中吸引了光电化学(PEC)系统中的辅助催化剂。通过调整其化学成分和结构形态,可以容易地准备宽的LDH。我们在这里描述了NiFe-LDH覆盖物在Cu2O电极上的电化学生长并研究其PEC行为。通过使用改进的Cu2O / NiFe-LDH电极,我们观察到施加电压下的光电流强度的显着七倍增加,低至-0.2〜Ag / AgCl。这种明显效果的起源是由于适当的能级对准而导致NiFe-LDH覆盖器带来的电解质的改进的电子传递。长期光稳定性试验显示Cu2O / NiFe-LDH光致光阴离子显示在-0.2°-0'V VS Ag / AgCl低偏压条件下在光下的40℃下操作后的40℃的光电流损失。这些改进的性能使CU2O / NIFE-LDH成为低电压H2产生的合适光电阴极材料。实际上,在8℃下的8个小时后,在-0.2〜vs vs vs / agcl下,PEC细胞提供78%的竞争效率。考虑到在阳光照射下的低偏差或自偏向PEC水分,这种前所未有的使用Cu2O / NiFe-LDH作为高效光电阴极开启了新的视角。

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