纳米棒
光电探测器
等离子体子
材料科学
红外线的
光子
光电子学
光学
纳米技术
物理
作者
Zhuoqun Fang,A. Zimmers,Ke Li,Dongjiu Zhang,Tianyu Lan,Baoquan Sun,Laurent Billot,Lionel Aigouy,Zhuoying Chen
标识
DOI:10.1002/aelm.202500172
摘要
Abstract Thermal detectors, such as bolometers functioning by detecting the radiation‐induced temperature changes, represent a promising route to achieve infrared detection and imaging. In this context, vanadium dioxide (VO 2 ), a narrow bandgap ( E g ) semiconductor ( E g ≈0.6–0.7 eV) with a unique near‐room‐temperature reversible metal‐to‐insulator transition (MIT), has emerged as one of the key materials for uncooled bolometer‐type short‐wave infrared (SWIR) photodetectors. In this work, photodetectors sensitive to the SWIR spectrum are fabricated to function at room‐temperature by coupling solution‐processed tungsten (W 6+ )‐doped VO 2 thin films to colloidal plasmonic gold (Au) nanorods (NRs). Due to the dual beneficial roles of the NRs as both the photothermal heating and plasmonic antenna effects, the hybrid Au NR/VO 2 devices exhibit significant advantages in terms of photosensitivity and detection range in comparison to the control devices without plasmonics. Together with the low external DC bias required (0.5 V) and the fast response speed ( t rise down to 14 ms), the present hybrid plasmonic‐VO 2 thin film devices suggest a viable approach toward the development of future cost‐effective SWIR photodetectors.
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