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Photoelectrochemistry of p-type Cu2O semiconductor electrode in ionic liquid

机译:离子液体中p型Cu2O半导体电极的光电化学

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We investigated the photoelectrochemical characteristics and photo-stability Of Cu2O layered on a copper plate using a hydrophobic ionic liquid. Our findings revealed that Cu2O is stable under white light irradiation, provided water is removed from the electrolyte. Methyl viologen derivative, a well-established electron acceptor, was introduced to the ionic liquid electrolyte, allowing the photo-induced electron transfer reaction at the Cu2O/electrolyte interface to be characterized. The methyl viologen derivative exhibited two distinct redox reactions at -0.56 V and -0.98 V vs. Ag/AgCl, clearly indicating that no dimer formation or co-proportionation reaction occurred. The excessive photocurrents being continuously generated resulted from a viable photo-induced electron transfer reaction from the Cu2O to the acceptor. However, in contrast, the reduction of the Cu2O by water in the aqueous solution causes this electron transfer to be inhibited. We further demonstrate that these findings are vital to understanding the role of the Cu2O and its photoelectrochemical applications.
机译:我们研究了使用疏水性离子液体在铜板上沉积的Cu2O的光电化学特性和光稳定性。我们的发现表明,只要从电解液中除去水,Cu2O在白光照射下就稳定。甲基紫精衍生物(一种完善的电子受体)被引入离子液体电解质中,从而可以表征Cu2O /电解质界面处的光诱导电子转移反应。相对于Ag / AgCl,甲基紫精衍生物在-0.56 V和-0.98 V处表现出两个不同的氧化还原反应,清楚地表明没有二聚体形成或共配位反应发生。持续产生过量的光电流是由于从Cu2O到受体的光致电子转移反应。然而,相反,水溶液中水对Cu 2 O的还原导致该电子转移被抑制。我们进一步证明,这些发现对于理解Cu2O的作用及其光电化学应用至关重要。

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