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◆ Optics letters2026-09-15

Strain engineered electro-optic and opto-electronic conversion in InSe Schottky junctions.

Sinong Liu, Yu Zhang, Haoyun Huang, Boxiang Zhao, Tianren Zhang, Wenjing Shi, Xin Xie, Wenfei Li, Guangpeng Zhu, Tao Wang, Wei Du

原始摘要(英文原文)· Original abstract
Layered indium selenide (InSe) emerges as a promising candidate for next-generation optoelectronics, yet achieving dynamically reconfigurable near-infrared light sources and photodetectors in these devices remains challenging. Here, we demonstrate a strain-engineered bifunctional device based on a vertical graphene/γ-InSe/graphene Schottky junction on a flexible polypropylene (PP) substrate. By exploiting the large thermal expansion coefficient (CTE) mismatch between InSe and PP, reversible biaxial strain is precisely induced in situ via thermal control. Under electro-optic operation, compressive strain widens InSe's bandgap via lattice distortion, generating a pronounced blueshift (up to 65 meV) in the electroluminescence (EL) peak. For opto-electronic conversion, strain-mediated modulation of Schottky barrier height suppresses dark current while modulating photocurrent and photoresponsivity under 532 nm and 980 nm illumination. This work establishes strain as a new strategy for reconfigurable InSe-based optoelectronic devices.
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Strain engineered electro-optic and opto-electronic conversion in InSe Schottky junctions. — 科研速览 Science Skim