首页> 外文期刊>Applied Physics Letters >Self-polarization effect on large photovoltaic response in lead free ferroelectric 0.5Ba(Zr_(0.2)Ti_(0.8))O_3-0.5(Ba_(0.7)Ca_(0.3))TiO_3 epitaxial film
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Self-polarization effect on large photovoltaic response in lead free ferroelectric 0.5Ba(Zr_(0.2)Ti_(0.8))O_3-0.5(Ba_(0.7)Ca_(0.3))TiO_3 epitaxial film

机译:自极化对无铅铁电体0.5Ba(Zr_(0.2)Ti_(0.8))O_3-0.5(Ba_(0.7)Ca_(0.3))TiO_3外延膜中大光伏响应的影响

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摘要

An epitaxial lead free ferroelectric 0.5Ba(Zr0.2Ti0.8)O-3-0.5(Ba0.7Ca0.3)TiO3 (BZT-BCT) thin film is fabricated on a (001) Nb:SrTiO3 single crystalline substrate by the pulsed laser deposition method. The 2.3% lattice mismatch between the BZT-BCT and substrate suggests that the film is grown under a compressively strained state by leaving a large strain gradient near the interface. Polarization versus electric field measurement reveals that the film exhibits a ferroelectric hysteresis character with a large imprint effect indicating the existence of an internal electric field. The origin of the internal electric field is correlated with the strain gradient induced flexoelectric effect and the interfacial built-in field. Consequently, the resultant internal electric field could lead to a self-polarized non-switchable layer at the interface. The evidence for the envisaged self-polarization effect is indeed shown by the piezo force microscopic measurements. Importantly, photovoltaic studies performed on the film display an open circuit voltage of 1.1 V, which is higher than the values reported for many ferroelectric films. The observed photovoltaic response is correlated with the depolarization field and the self-polarization effect. The demonstrated large photo-response illustrates the application potential of the BZT-BCT system in photovoltaic devices. Published by AIP Publishing.
机译:在(001)Nb:SrTiO3单晶衬底上通过脉冲制造外延无铅铁电体0.5Ba(Zr0.2Ti0.8)O-3-0.5(Ba0.7Ca0.3)TiO3(BZT-BCT)薄膜。激光沉积法。 BZT-BCT与基材之间的2.3%晶格失配表明,薄膜在界面附近留下了较大的应变梯度,从而在压缩应变状态下生长。极化与电场测量结果表明,该膜表现出铁电磁滞特性,并具有较大的压印效果,表明存在内部电场。内部电场的起源与应变梯度引起的柔电效应和界面固有场相关。因此,所产生的内部电场可能会在界面处导致自极化的不可切换层。压电力显微镜测量确实显示了预期的自极化效应的证据。重要的是,在薄膜上进行的光伏研究显示出1.1 V的开路电压,该电压高于许多铁电薄膜报道的值。观察到的光伏响应与去极化场和自极化效应相关。演示的大光响应说明了BZT-BCT系统在光伏设备中的应用潜力。由AIP Publishing发布。

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