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Universal mechanical exfoliation of large-area 2D crystals | Nature Communications

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Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript. Advertisement Nature Communications volume  11, Article number: 2453 (2020) Cite this article 95k Accesses 691 Citations 8 Altmetric Metrics details An Author Correction to this article was published on 05 June 2020 This article has been updated Two-dimensional materials provide extraordinary opportunities for exploring phenomena arising in atomically thin crystals. Beginning with the first isolation of graphene, mechanical exfoliation has been a key to provide high-quality two-dimensional materials, but despite improvements it is still limited in yield, lateral size and contamination. Here we introduce a contamination-fr

Download PDF Subjects Condensed-matter physics Materials for devices Two-dimensional materials An Author Correction to this article was published on 05 June 2020 This article has been updated Abstract Two-dimensional materials provide extraordinary opportunities for exploring phenomena arising in atomically thin crystals. Beginning with the first isolation of graphene, mechanical exfoliation has been a key to provide high-quality two-dimensional materials, but despite improvements it is still limited in yield, lateral size and contamination. Here we introduce a contamination-free, one-step and

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