The effect of substrate topography on the local electronic structure of WS2 nanotubes (original) (raw)

Imaging of dopants in surface and sub-surface layers of the transition metal dichalcogenides WS 2 and WSe 2 by scanning tunneling microscopy

Paul Leiderer

Applied Physics A: Materials Science & Processing, 1998

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Surface Defects as a Tool to Solubilize and Functionalize WS2 Nanotubes

Wolfgang Tremel

European Journal of Inorganic Chemistry, 2017

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WS 2 Nanotubes: Electrical Conduction and Field Emission Under Electron Irradiation and Mechanical Stress

Alessandro Grillo

Small, 2020

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Local electronic structure of UHV cleaved WS2 surface: In-situ STM and STS studies

Manu Mohan

DAE SOLID STATE PHYSICS SYMPOSIUM 2018, 2019

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Scanning Probe Spectroscopy of WS2/Graphene Van Der Waals Heterostructures

Camilla Coletti

Nanomaterials

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Cathodoluminescence in single and multiwall WS2 nanotubes: Evidence for quantum confinement and strain effect

saptarshi ghosh

Applied Physics Reviews, 2020

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Morphology, structure and growth of WS2 nanotubes

Bingqing Wei

Journal of Materials Chemistry, 2000

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Investigation of spatially localized defects in synthetic WS2 monolayers

Bernardo Ruegger Almeida Neves

Physical Review B

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MoS2 and WS2 Nanotubes: Synthesis, Structural Elucidation, and Optical Characterization

saptarshi ghosh

The Journal of Physical Chemistry C

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Band alignment in MoS2/WS2 transition metal dichalcogenide heterostructures probed by scanning tunneling microscopy and spectroscopy

Kwang Rim

Nano letters, 2016

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On the synthesis of WS2 nanotubes: reaction mechanism revelation by in-situ scanning and ex-situ transmission electron microscopy

Libor Novak

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Imaging microscopic electronic contrasts at the interface of single-layer WS2 with oxide and boron nitride substrates

Jyoti Katoch

Applied Physics Letters, 2019

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Spatially Resolved Electronic Properties of Single-Layer WS2 on Transition Metal Oxides

Jyoti Katoch

ACS nano, 2016

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Direct Observation of 2D Electrostatics and Ohmic Contacts in Template-Grown Graphene/WS2 Heterostructures

Bent Weber

ACS nano, 2017

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Symmetry-based Study of MoS2 and WS2 Nanotubes

Ivanka Milosevic

Israel Journal of Chemistry, 2016

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Vertical and in-plane heterostructures from WS2/MoS2 monolayers

Boris Yakobson

Nature Materials, 2014

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Vertical field-effect transistor based on graphene-WS2 heterostructures for flexible and transparent electronics

Artem Mishchenko, Sarah Haigh

Nature Nanotechnology, 2013

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Electronic properties and optical spectra of MoS2 and WS2 nanotubes

Ivanka Milošević, Milan Damnjanovic

Physical Review B, 2007

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Electrical and optical characterization of atomically thin WS2

Artem Mishchenko

Dalton Transactions, 2014

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Size‐Dependent Control of Exciton–Polariton Interactions in WS2 Nanotubes

Sudarson Sekhar Sinha

Small, 2019

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Observation of Current Reversal in the Scanning Tunneling Spectra of Fullerene-like WS 2 Nanoparticles

Oded Millo

Nano Letters, 2006

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Negative Differential Resistance Effect and Current Rectification in Ws2 Nanotubes: A Density Functional Theory Study

Somaieh Ahmadi, Mohammad Acef Ebrahimi

SSRN Electronic Journal

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Synthesis and Optical Properties of Large-Area Single-Crystalline 2 D Semiconductor WS 2 Monolayer from Chemical Vapor Deposition

Bingchen Cao

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First-Principles Evaluation of the Morphology of WS2 Nanotubes for Application as Visible-Light-Driven Water-Splitting Photocatalysts

stephane kenmoe

ACS Omega, 2019

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Effect of Nanoribbon Width and Strain on the Electronic Properties of the WS2 Nanoribbon

Aayush Gupta

Journal of Low Power Electronics, 2014

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WS2 2D nanosheets in 3D nanoflowers

Alison Crossley

Chemical Communications, 2014

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Light matter interaction in WS2 nanotube-graphene hybrid devices

Rudheer Bapat, Pratiksha Dongare

Applied Physics Letters, 2014

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Tunable electronic and magnetic properties of WS2 nanoribbons

Rimsha Anwar

Journal of Applied Physics, 2013

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Area-Selective Atomic Layer Deposition of Two-Dimensional WS2 Nanolayers

Marcel Verheijen

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Disentangling the effects of doping, strain and disorder in monolayer WS2 by optical spectroscopy

Pavel V . Kolesnichenko

2D Materials, 2019

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Facilitating Uniform Large-Scale MoS2, WS2 Monolayers, and Their Heterostructures through van der Waals Epitaxy

Chung-Che Huang

ACS Applied Materials & Interfaces

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Enhanced Field Emission of WS 2 Nanotubes

Georgios Viskadouros

Small, 2014

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