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Emerging Device Applications for Semiconducting Two-Dimensional Transition Metal Dichalcogenides

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TLDR
By critically assessing and comparing the performance of these devices with competing technologies, the merits and shortcomings of this emerging class of electronic materials are identified, thereby providing a roadmap for future development.
Abstract
With advances in exfoliation and synthetic techniques, atomically thin films of semiconducting transition metal dichalcogenides have recently been isolated and characterized. Their two-dimensional structure, coupled with a direct band gap in the visible portion of the electromagnetic spectrum, suggests suitability for digital electronics and optoelectronics. Toward that end, several classes of high-performance devices have been reported along with significant progress in understanding their physical properties. Here, we present a review of the architecture, operating principles, and physics of electronic and optoelectronic devices based on ultrathin transition metal dichalcogenide semiconductors. By critically assessing and comparing the performance of these devices with competing technologies, the merits and shortcomings of this emerging class of electronic materials are identified, thereby providing a roadmap for future development.

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Citations
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Enhanced photocatalytic activity for hydrogen evolution from water by Zn0.5Cd0.5S/WS2 heterostructure

TL;DR: In this paper, a one-step hydrothermal method with thioacetamide as sulfur source was used to identify the intimate heterojunctions between Zn 0.5Cd0.5S and WS2, which enhanced the separation of the photogenerated holeelectron pairs.
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Ultra-narrow blue phosphorene nanoribbons for tunable optoelectronics

TL;DR: In this article, optoelectronic properties of ultra-narrow blue phosphorene nanoribbons (BPNRs) within the state-of-the-art density functional theory framework were reported.
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Interfacing Transition Metal Dichalcogenides with Carbon Nanodots for Managing Photoinduced Energy and Charge-Transfer Processes

TL;DR: The present study highlights the importance of TMD-derived donor-acceptor hybrids in light energy harvesting and optoelectronic applications and reveals facile oxidation of MoS2 over WS2 in the examined hybrids, suggesting it to be better electron donor.
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Devices and applications of van der Waals heterostructures

TL;DR: In this article, the authors review the approach of synthesis of van der Waals heterostructures, discuss the property of heterstructures and thoroughly illustrate the functional van derWaals structures used in novel electronic and photoelectronic devices.
Journal ArticleDOI

Variable range hopping electric and thermoelectric transport in anisotropic black phosphorus

TL;DR: In this paper, a three-dimensional variable range hopping model is adopted to analyze the abnormal temperature dependency of electrical conductivity and Seebeck coefficient in the basal plane of black phosphorus (BP) nanoribbons.
References
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Journal ArticleDOI

Electric Field Effect in Atomically Thin Carbon Films

TL;DR: Monocrystalline graphitic films are found to be a two-dimensional semimetal with a tiny overlap between valence and conductance bands and they exhibit a strong ambipolar electric field effect.
Journal ArticleDOI

The electronic properties of graphene

TL;DR: In this paper, the basic theoretical aspects of graphene, a one-atom-thick allotrope of carbon, with unusual two-dimensional Dirac-like electronic excitations, are discussed.
Proceedings Article

Physics of semiconductor devices

S. M. Sze
Journal ArticleDOI

Electronics and optoelectronics of two-dimensional transition metal dichalcogenides.

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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