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多铁性 BiFeO3 纳米线在亚带隙光照射下的表面主导光响应。

Surface dominant photoresponse of multiferroic BiFeO3 nanowires under sub-bandgap illumination.

机构信息

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, AB, T6G 2V4, Canada.

出版信息

Nanotechnology. 2013 Dec 20;24(50):505710. doi: 10.1088/0957-4484/24/50/505710. Epub 2013 Nov 27.

Abstract

A surface dominant sub-bandgap photo-carrier generation has been observed in multiferroic BiFeO3 (BFO) nanowires, which is mainly attributed to the depopulation of surface states that exist within the bandgap. Mapping of surface potential using Kelvin probe force microscopy (KPFM) further supports the depopulation of surface states in BFO nanowires under sub-bandgap illumination. The mechanism of photovoltage generation in BFO nanowires is investigated by measuring the photoresponse with local illumination of visible laser pulses at different positions of the BFO nanowires. Interestingly, large photovoltage signals were observed when the laser spot was focused close to contact electrodes, showing a position dependent effect of photoresponse in the BFO nanowires. The sub-bandgap excitation of surface states in multiferroic nanowires offers potential new strategies for application in photovoltaic devices.

摘要

在多铁性 BiFeO3(BFO)纳米线中观察到了表面主导的亚带隙光载流子产生,这主要归因于带隙内表面态的耗尽。使用 Kelvin 探针力显微镜(KPFM)对表面电势进行映射进一步支持了 BFO 纳米线在亚带隙照明下表面态的耗尽。通过测量在 BFO 纳米线的不同位置用可见光激光脉冲进行局部照明时的光响应,研究了 BFO 纳米线中光电压产生的机制。有趣的是,当激光点聚焦在接近接触电极的位置时,观察到了大的光电压信号,表明在 BFO 纳米线中存在光响应的位置依赖性。多铁性纳米线中表面态的亚带隙激发为在光伏器件中的应用提供了潜在的新策略。

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