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Journal ArticleDOI

Enhancing photoresponsivity using MoTe2-graphene vertical heterostructures

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TLDR
In this paper, a few layer MoTe2-graphene vertical heterostructures have a much larger photo responsivity of ∼20 µmµW−1.
Abstract
MoTe2 with a narrow band-gap of ∼1.1 eV is a promising candidate for optoelectronic applications, especially for the near-infrared photo detection. However, the photo responsivity of few layers MoTe2 is very small (<1 mA W−1). In this work, we show that a few layer MoTe2-graphene vertical heterostructures have a much larger photo responsivity of ∼20 mA W−1. The trans-conductance measurements with back gate voltage show on-off ratio of the vertical transistor to be ∼(0.5–1) × 105. The rectification nature of the source-drain current with the back gate voltage reveals the presence of a stronger Schottky barrier at the MoTe2-metal contact as compared to the MoTe2-graphene interface. In order to quantify the barrier height, it is essential to measure the work function of a few layers MoTe2, not known so far. We demonstrate a method to determine the work function by measuring the photo-response of the vertical transistor as a function of the Schottky barrier height at the MoTe2-graphene interface tuned by elec...

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Citations
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Journal ArticleDOI

Progress, Challenges, and Opportunities for 2D Material Based Photodetectors

TL;DR: A review of photodetectors based on 2D materials covering the detection spectrum from ultraviolet to infrared is presented in this paper, where a brief insight into the detection mechanisms of 2D material photodeterceptors as well as introducing the figure-of-merits which are key factors for a reasonable comparison between different photoderectors is provided.
Journal ArticleDOI

Electronic and Optoelectronic Applications Based on 2D Novel Anisotropic Transition Metal Dichalcogenides

TL;DR: A comprehensive review of anisotropic MTe2 and ReX2, focusing on their recent progresses and various applications in recent years, and the crystalline structure and the origin of the strong anisotropy characterized by various techniques are discussed.
Journal ArticleDOI

Near-Infrared Photodetectors Based on MoTe2 /Graphene Heterostructure with High Responsivity and Flexibility.

TL;DR: Flexible devices based on the MoTe2 /graphene heterostructure on flexible substrate also retains a good photodetection ability after thousands of times bending test, which provides a promising platform for highly efficient, flexible, and low cost broadband NIR Photodetectors.
Journal ArticleDOI

Fast and Highly Sensitive Ionic-Polymer-Gated WS2 -Graphene Photodetectors

TL;DR: At atomically thin graphene-WS2 heterostructure photodetectors encapsulated in an ionic polymer are reported, which are uniquely able to operate at bandwidths up to 1.5 kHz whilst maintaining internal gain as large as 106 and approaching that of single-photon counters.
Journal ArticleDOI

Fast High-Responsivity Few-Layer MoTe2 Photodetectors

TL;DR: In this paper, the authors acknowledge funding via EPSRC grants EP/M015173/1 and EP/m015130/1 for research at the EPSRC Centre for Doctoral Training in Metamaterials.
References
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Journal ArticleDOI

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TL;DR: This work reviews the historical development of Transition metal dichalcogenides, methods for preparing atomically thin layers, their electronic and optical properties, and prospects for future advances in electronics and optoelectronics.
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TL;DR: With steady improvement in fabrication techniques and using graphene’s springboard, van der Waals heterostructures should develop into a large field of their own.
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TL;DR: Ultraensitive monolayer MoS2 phototransistors with improved device mobility and ON current are demonstrated, showing important potential for applications in MoS 2-based integrated optoelectronic circuits, light sensing, biomedical imaging, video recording and spectroscopy.
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Single-Layer MoS2 Phototransistors

TL;DR: The unique characteristics of incident-light control, prompt photoswitching, and good photoresponsivity from the MoS(2) phototransistor pave an avenue to develop the single-layer semiconducting materials for multifunctional optoelectronic device applications in the future.
Journal ArticleDOI

Photodetectors based on graphene, other two-dimensional materials and hybrid systems

TL;DR: An overview and evaluation of state-of-the-art photodetectors based on graphene, other two-dimensional materials, and hybrid systems based on the combination of differentTwo-dimensional crystals or of two- dimensional crystals and other (nano)materials, such as plasmonic nanoparticles, semiconductors, quantum dots, or their integration with (silicon) waveguides are provided.
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