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Interband plasmonic nanoresonators for enhanced thermoelectric photodetection
Journal article   Peer reviewed

Interband plasmonic nanoresonators for enhanced thermoelectric photodetection

Golnoush Zamiri, Simon Wredh, Md Abdur Rahman, Nur Qalishah Adanan, Cam Nhung Vu, Hongtao Wang, Deepshikha Arora, Haruya Sugiyama, Wakana Kubo, Zhaogang Dong, …
Nanophotonics (Berlin, Germany), Vol.14(9), pp.1365-1373
04/2025
PMID: 40309426

Abstract

Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Optics Physical Sciences Physics Physics, Applied Science & Technology Science & Technology - Other Topics Technology
Thermoelectric photodetectors are robust alternatives to photodiodes with applications in extreme environments; however, the poor absorptivity of thermoelectric materials limits their photosensitivity. Here, we take a new look at the traditional thermoelectric materials Sb2Te3 and Bi2Te3 in their recently discovered ability to support interband plasmonic resonances in the visible spectrum. We fabricated nanoresonators directly into the thermoelectric materials to improve their optical absorptance through plasmonic field enhancements, leading to improved photo-thermoelectric conversion. A thermoelectric detector with Sb2Te3 and Bi2Te3 nanostructures demonstrated similar to 90 % optical absorptance across the visible spectrum, more than twice that of unpatterned materials. The solid-state device was fabricated on a substrate and exhibited a response time of 160 mu s and a specific detectivity of 3.2 x10 (6)cm H z(1/2) W-1. Our demonstration that plasmonic and thermoelectric properties can be exploited within the same material could advance photodetectors and other optoelectronic technologies, such as biosensors, solar cells, and integrated spectrometers.
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https://doi.org/10.1515/nanoph-2024-0752View
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