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Disorder in van der Waals heterostructures of 2D materials.

Realizing the full potential of any materials system requires understanding and controlling disorder, which can obscure intrinsic properties and hinder device performance. Here we examine both intrinsic and extrinsic disorder in two-dimensional (2D) materials, in particular graphene and transition m... Full description

Journal Title: Nature materials June 2019, Vol.18(6), pp.541-549
Main Author: Rhodes, Daniel
Other Authors: Chae, Sang Hoon , Ribeiro-Palau, Rebeca , Hone, James
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: ISSN: 1476-1122 ; DOI: 10.1038/s41563-019-0366-8
Link: http://search.proquest.com/docview/2232079032/?pq-origsite=primo
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recordid: proquest2232079032
title: Disorder in van der Waals heterostructures of 2D materials.
format: Article
creator:
  • Rhodes, Daniel
  • Chae, Sang Hoon
  • Ribeiro-Palau, Rebeca
  • Hone, James
subjects:
  • Heterostruktur
  • Ausrüstungsleistungsfähigkeit
  • Übergangsmetalle
  • Bornitrid
  • Graphen
  • Chemische Funktion
  • Hexagonales Bornitrid
  • Engineering
ispartof: Nature materials, June 2019, Vol.18(6), pp.541-549
description: Realizing the full potential of any materials system requires understanding and controlling disorder, which can obscure intrinsic properties and hinder device performance. Here we examine both intrinsic and extrinsic disorder in two-dimensional (2D) materials, in particular graphene and transition metal dichalcogenides (TMDs). Minimizing disorder is crucial for realizing desired properties in 2D materials and improving device performance and repeatability for practical applications. We discuss the progress in disorder control for graphene and TMDs, as well as in van der Waals heterostructures realized by combining these materials with hexagonal boron nitride. Furthermore, we showcase how atomic defects or disorder can also be harnessed to provide useful electronic, optical, chemical and magnetic functions.
language: eng
source:
identifier: ISSN: 1476-1122 ; DOI: 10.1038/s41563-019-0366-8
fulltext: fulltext
issn:
  • 14761122
  • 1476-1122
url: Link


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descriptionRealizing the full potential of any materials system requires understanding and controlling disorder, which can obscure intrinsic properties and hinder device performance. Here we examine both intrinsic and extrinsic disorder in two-dimensional (2D) materials, in particular graphene and transition metal dichalcogenides (TMDs). Minimizing disorder is crucial for realizing desired properties in 2D materials and improving device performance and repeatability for practical applications. We discuss the progress in disorder control for graphene and TMDs, as well as in van der Waals heterostructures realized by combining these materials with hexagonal boron nitride. Furthermore, we showcase how atomic defects or disorder can also be harnessed to provide useful electronic, optical, chemical and magnetic functions.
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