首页> 美国卫生研究院文献>Scientific Reports >Electronic Structure Engineering of Cu2O Film/ZnO Nanorods Array All-Oxide p-n Heterostructure for Enhanced Photoelectrochemical Property and Self-powered Biosensing Application
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Electronic Structure Engineering of Cu2O Film/ZnO Nanorods Array All-Oxide p-n Heterostructure for Enhanced Photoelectrochemical Property and Self-powered Biosensing Application

机译:Cu2O薄膜/ ZnO纳米棒阵列全氧化物p-n异质结构的电子结构工程用于增强光电化学性能和自供电生物传感应用

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摘要

We have engineered the electronic structure at the interface between Cu2O and ZnO nanorods (NRs) array, through adjusting the carrier concentration of Cu2O. The electrodeposition of Cu2O at pH 11 acquired the highest carrier concentration, resulting in the largest interfacial electric field between Cu2O and ZnO, which finally led to the highest separation efficiency of photogenerated charge carriers. The optimized Cu2O/ZnO NRs array p-n heterostructures exhibited enhanced PEC performance, such as elevated photocurrent and photoconversion efficiency, as well as excellent sensing performance for the sensitive detection of glutathione (GSH) in PBS buffer even at applied bias of 0 V which made the device self-powered. Besides, the favorable selectivity, high reproducibility and extremely wide detection range, make such heterostructure a promising candidate for PEC biosensing applications, probably for the extended field of PEC water splitting or other solar photovoltaic beacons.
机译:我们通过调节Cu2O的载流子浓度,设计了Cu2O和ZnO纳米棒(NRs)阵列之间界面的电子结构。在pH为11的条件下电沉积Cu2O可获得最高的载流子浓度,从而在Cu2O和ZnO之间产生最大的界面电场,最终导致光生载流子的分离效率最高。优化的Cu2O / ZnO NRs阵列pn异质结构表现出增强的PEC性能,例如提高的光电流和光转换效率,以及即使在施加偏压为0 V时也能出色地灵敏检测PBS缓冲液中的谷胱甘肽(GSH)的传感性能。设备自供电。此外,良好的选择性,高重现性和极宽的检测范围使此类异质结构成为PEC生物传感应用的有希望的候选者,可能是PEC水分解或其他太阳能光伏信标的扩展领域。

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