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基于多重耦合协同效应的高性能自供电可见光探测器

High-performance and self-powered visible light photodetector using multiple coupled synergetic effects.

作者信息

Silva José P B, Vieira Eliana M F, Gwozdz Katarzyna, Silva Nuno E, Kaim Adrian, Istrate Marian C, Ghica Corneliu, Correia José H, Pereira Mario, Marques Luís, MacManus-Driscoll Judith L, Hoye Robert L Z, Gomes Maria J M

机构信息

Physics Center of Minho and Porto Universities (CF-UM-UP), University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.

Laboratory of Physics for Materials and Emergent Technologies, LapMET, University of Minho, 4710-057 Braga, Portugal.

出版信息

Mater Horiz. 2024 Feb 6;11(3):803-812. doi: 10.1039/d3mh01725g.

Abstract

In this work, we demonstrate, for the first time, that coupling together the pyroelectric effect, the photovoltaic effect and the plasmonic effect is a novel method to significantly enhance the performance of self-powered photodetectors in the visible region. Photodetectors based on tri-layered heterojunction of n-Si/p-SnO/n-ZnO through the inclusion of silver (Ag) nanoparticles (NPs) at the SnO/ZnO interface were fabricated. The photo-response of the device, with excitation from a chopped 650 nm wavelength laser, was carefully investigated, and it was shown that the photodetector performance is enhanced the most with the inclusion of spheroidal Ag NPs with ∼70 nm diameter. The Al/Si/SnO/Ag NPs/ZnO/ITO device exhibited an optimum responsivity, detectivity and sensitivity of 210.2 mA W, 5.47 × 10 Jones and 15.0 × 10, respectively, together with a rise and fall time of 2.3 and 51.3 μs, respectively, at a laser power density of 317 mW cm and at a chopper frequency of 10 Hz. The present photodetectors are more than twice as responsive as the current best-performing ZnO-based pyro-phototronic photodetectors and they also exhibit other competitive features, such as detectivity, and fall and rise times. Therefore, by exploiting the plasmonic effect of the Ag NPs together with the pyroelectric effect in a ZnO film, and the photovoltaic effect at a Si/SnO junction, all in a single device, photodetectors were developed with state-of-the-art performance for the visible region.

摘要

在这项工作中,我们首次证明,将热释电效应、光伏效应和等离子体效应耦合在一起是一种显著提高自供电光电探测器在可见光区域性能的新方法。通过在SnO/ZnO界面处引入银(Ag)纳米颗粒(NPs),制备了基于n-Si/p-SnO/n-ZnO三层异质结的光电探测器。仔细研究了该器件在650 nm波长斩波激光激发下的光响应,结果表明,包含直径约70 nm的球形Ag NPs时,光电探测器的性能提升最为显著。Al/Si/SnO/Ag NPs/ZnO/ITO器件在激光功率密度为317 mW/cm²、斩波频率为10 Hz时,分别表现出210.2 mA/W的最佳响应度、5.47×10¹¹ Jones的探测率和15.0×10⁵的灵敏度,上升时间和下降时间分别为2.3 μs和51.3 μs。目前的光电探测器的响应度是目前性能最佳的基于ZnO的热光电探测器的两倍多,并且还表现出其他竞争特性,如探测率以及下降和上升时间。因此,通过在单个器件中利用Ag NPs的等离子体效应以及ZnO薄膜中的热释电效应和Si/SnO结处的光伏效应,开发出了在可见光区域具有先进性能的光电探测器。

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