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二维量子限域金属有机硫族化物纳米晶体薄膜的光电特性

Photo-electrical properties of 2D quantum confined metal-organic chalcogenide nanocrystal films.

作者信息

Maserati Lorenzo, Prato Mirko, Pecorario Stefano, Passarella Bianca, Perinot Andrea, Thomas Anupa Anna, Melloni Filippo, Natali Dario, Caironi Mario

机构信息

Center for Nano Science and Technology @PoliMi, Istituto Italiano di Tecnologia, 20133 Milan, Italy.

出版信息

Nanoscale. 2021 Jan 7;13(1):233-241. doi: 10.1039/d0nr07409h. Epub 2020 Dec 17.

Abstract

Hybrid quantum wells are electronic structures where charge carriers are confined along stacked inorganic planes, separated by insulating organic moieties. 2D quantum-confined hybrid materials are of great interest from a solid-state physics standpoint because of the rich many-body phenomena they host, their tunability and easy synthesis, allowing the creation of material libraries. In addition, from a technological point of view, 2D hybrids are promising candidates for efficient, tunable, low-cost materials impacting a broad range of optoelectronic devices. Different approaches and materials have, therefore, been investigated, with the notable example of 2D metal halide hybrid perovskites. Despite the remarkable properties of such materials, the presence of toxic elements like lead is not desirable in applications and their ionic lattices may represent a limiting factor for stability under operating conditions. Therefore, non-ionic 2D materials made with non-toxic elements are preferable. In order to expand the library of possible hybrid quantum well materials, herein, we consider an alternative platform based on non-toxic, self-assembled, metal-organic chalcogenides. While the optical properties have been recently explored and some unique excitonic characters highlighted, photo-generation of carriers and their transport in these lamellar inorganic/organic nanostructures and critical optoelectronic aspects remain totally unexplored. We hereby report the first investigation on the electrical properties of the air-stable [AgSePh] 2D coordination polymer in the form of nanocrystal (NC) films readily synthesized in situ and at low temperature, compatible with flexible plastic substrates. The wavelength-dependent photo-response of the NC films suggests the possible use of this material as a near-UV photodetector. We therefore built a lateral photo-detector, achieving a sensitivity of 0.8 A W at 370 nm, thanks to a photoconduction mechanism, and a cut-off frequency of ∼400 Hz, and validated its reliability as an air-stable UV detector on flexible substrates.

摘要

混合量子阱是一种电子结构,其中电荷载流子被限制在沿堆叠的无机平面内,由绝缘有机部分分隔。从固态物理学的角度来看,二维量子限制混合材料因其所呈现的丰富多体现象、可调性和易于合成而备受关注,这使得能够创建材料库。此外,从技术角度来看,二维混合材料有望成为高效、可调谐、低成本的材料,对广泛的光电器件产生影响。因此,人们研究了不同的方法和材料,二维金属卤化物混合钙钛矿就是一个显著的例子。尽管这类材料具有卓越的性能,但应用中存在铅等有毒元素是不可取的,并且它们的离子晶格可能是运行条件下稳定性的限制因素。因此,由无毒元素制成的非离子二维材料更可取。为了扩展可能的混合量子阱材料库,在此我们考虑一个基于无毒、自组装金属有机硫族化物的替代平台。虽然最近已经探索了其光学性质并突出了一些独特的激子特性,但在这些层状无机/有机纳米结构中载流子的光生及其传输以及关键的光电方面仍完全未被探索。我们在此报告了对空气稳定的[AgSePh]二维配位聚合物以纳米晶体(NC)薄膜形式的电学性质的首次研究,该薄膜易于原位低温合成,与柔性塑料基板兼容。NC薄膜的波长依赖性光响应表明这种材料有可能用作近紫外光探测器。因此,我们构建了一个横向光探测器,由于光导机制,在370nm处实现了0.8 A/W的灵敏度和约400Hz的截止频率,并验证了其作为柔性基板上空气稳定的紫外探测器的可靠性。

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