首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhanced photovoltaic effect in Bi2FeMo0.7Ni0.3O6 ferroelectric thin films by tuning the thickness
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Enhanced photovoltaic effect in Bi2FeMo0.7Ni0.3O6 ferroelectric thin films by tuning the thickness

机译:通过调整厚度,增强Bi2Femo0.7Ni0.3O6铁电薄膜的光伏效果

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摘要

Ferroelectric photovoltaic (FE-PV) materials with excellent photocurrent output have stimulated many recent studies in solar energy material fields. How to improve the photocurrent by designing the structure of materials and devices through a simple approach is still a challenge. Here, enhanced photocurrent in Bi2FeMo0.7Ni0.3O6 (BFMNO) ferroelectric thin films is achieved by tuning the thickness of the thin films. With the increase of the thickness, the short circuit current increases first and then decreases. The maximum short circuit current reaches 0.09 mA cm(-2) under 100 mW cm(-2) when the thickness is 700 nm, which is nearly triple that of the thin film with the thickness of 570 nm. It is proposed that the compensation effect of the driving force comprising the depolarization field and build-in field is the main reason for the enhanced photocurrent. This work highlights a simple approach to enhance the photocurrent of FE-PV materials based on tuning of the thickness.
机译:具有优异的光电流输出的铁电光伏(Fe-PV)材料刺激了太阳能材料领域最近的研究。 如何通过简单的方法设计材料和器件的结构来改善光电流仍然是一个挑战。 这里,通过调节薄膜的厚度来实现Bi2Femo0.7Ni0.3O6(BFMNO)铁电薄膜中的增强的光电流。 随着厚度的增加,短路电流首先增加,然后减小。 当厚度为700nm时,最大短路电流在100mW cm(-2)下达到0.09 mA cm(-2),这几乎是厚度为570nm的薄膜的三倍。 提议,包括去极化场和构建场的驱动力的补偿效应是增强光电流的主要原因。 这项工作突出了一种简单的方法,可以基于调谐厚度的Fe-PV材料的光电流。

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