Solution‐Processed Heterojunction Photodiodes Based on WSe2 Nanosheet Networks

Author:

Liu Shixin1,Carey Tian1,Munuera Jose12,Synnatschke Kevin1,Kaur Harneet1,Coleman Emmet1,Doolan Luke1,Coleman Jonathan N.1ORCID

Affiliation:

1. School of Physics CRANN & AMBER Research Centres Trinity College Dublin 2 Ireland

2. Department of Physics Faculty of Sciences University of Oviedo C/Leopoldo Calvo Sotelo 18 Oviedo Asturias 33007 Spain

Abstract

AbstractSolution‐processed photodetectors incorporating liquid‐phase‐exfoliated transition metal dichalcogenide nanosheets are widely reported. However, previous studies mainly focus on the fabrication of photoconductors, rather than photodiodes which tend to be based on heterojunctions and are harder to fabricate. Especially, there are rare reports on introducing commonly used transport layers into heterojunctions based on nanosheet networks. In this study, a reliable solution‐processing method is reported to fabricate heterojunction diodes with tungsten selenide (WSe2) nanosheets as the optical absorbing material and PEDOT: PSS and ZnO as injection/transport‐layer materials. By varying the transport layer combinations, the obtained heterojunctions show rectification ratios of up to ≈104 at ±1 V in the dark, without relying on heavily doped silicon substrates. Upon illumination, the heterojunction can be operated in both photoconductor and photodiode modes and displays self‐powered behaviors at zero bias.

Funder

European Research Council

Science Foundation Ireland

China Scholarship Council

Graphene Flagship

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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