Universal co-existence of photovoltaics and ferroelectricity from two-dimensional 3R bilayer BX (X=P, As, Sb)
Qiang Wang, Yan Liang, Hui Yao, Jianwei Li, Tianwei Liu, Bin Wang

TL;DR
This study demonstrates that 2D 3R bilayer BX materials inherently exhibit switchable out-of-plane ferroelectricity and excellent photovoltaic properties, which can be tuned via ferroelectric polarization to enhance device performance.
Contribution
It reveals the universal coexistence and tunability of ferroelectricity and photovoltaics in 2D layered materials, specifically in 3R bilayer BX, through interlayer sliding and polarization control.
Findings
3R bilayer BX exhibits spontaneous out-of-plane ferroelectricity.
Photovoltaic performance depends on ferroelectric polarization strength.
Material shows high carrier mobility and efficient optical absorption.
Abstract
The intertwined ferroelectricity and photovoltaics in two-dimensional (2D) materials will enable the favorable improvement and control of photovoltaic preformances. In this paper, we take 2D 3R bilayer BX (X=P, As, Sb) as model systems to study the photovoltaic characteristics of intrinsic 2D out-of-plane (OOP) ferroelectric material, and try to explore a strategy to regulate the photoelectric properties by changing the strength of ferroelectric polarization. Due to the spatial inversion symmetry broken caused by special 3R stacking, spontaneous OOP ferroelectric polarization will appear in the 3R bilayer BX, which can be swichable through a specific interlayer sliding. The OOP ferroelectricity leads to charge transfer between layers, realizes efficient spatial separation between holes and electrons, and forms the characteristics of type-II band alignment. Moreover, due to perfect…
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Taxonomy
Topics2D Materials and Applications · Multiferroics and related materials · Advanced Sensor and Energy Harvesting Materials
