Graphene-black phosphorus printed photodetectors

Author:

Akhavan SORCID,Ruocco A,Soavi G,Taheri Najafabadi A,Mignuzzi S,Doukas SORCID,Cadore A R,Samad Y A K,Lombardi L,Dimos KORCID,Paradisanos I,Muench J E,Watson H F Y,Hodge S,Occhipinti L GORCID,Lidorikis E,Goykhman I,Ferrari A CORCID

Abstract

Abstract Layered materials (LMs) produced by liquid phase exfoliation (LPE) can be used as building blocks for optoelectronic applications. However, when compared with mechanically exfoliated flakes, or films prepared by chemical vapor deposition (CVD), LPE-based printed optoelectronic devices are limited by mobility, defects and trap states. Here, we present a scalable fabrication technique combining CVD with LPE LMs to overcome such limitations. We use black phosphorus inks, inkjet-printed on graphene on Si/SiO2, patterned by inkjet printing based lithography, and source and drain electrodes printed with an Ag ink, to prepare photodetectors (PDs). These have an external responsivity (R ext)∼337 A W−1 at 488 nm, and operate from visible (∼488 nm) to short-wave infrared (∼2.7 µm, R ext 48 mA W−1). We also use this approach to fabricate flexible PDs on polyester fabric, one of the most common used in textiles, achieving R ext 6 mA W−1 at 488 nm for an operating voltage of 1 V. Thus, our combination of scalable CVD and LPE techniques via inkjet printing is promising for wearable and flexible applications.

Funder

EU

ISF

Defence Science and Technology Laboratory

H2020 European Research Council

Engineering and Physical Sciences Research Council

Publisher

IOP Publishing

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry

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