Laser-induced phase separation of silicon carbide

Laser beam-induced processing is industrially relevant but often challenging to study in terms of underlying phase transformations. Here authors characterize formation of thin, phase-separated carbon and silicon layers on a silicon carbide substrate by laser-induced melting and solidification.

Bibliographic Details
Main Authors: Insung Choi, Hu Young Jeong, Hyeyoung Shin, Gyeongwon Kang, Myunghwan Byun, Hyungjun Kim, Adrian M. Chitu, James S. Im, Rodney S. Ruoff, Sung-Yool Choi, Keon Jae Lee
Format: Article
Language:English
Published: Nature Portfolio 2016-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms13562
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author Insung Choi
Hu Young Jeong
Hyeyoung Shin
Gyeongwon Kang
Myunghwan Byun
Hyungjun Kim
Adrian M. Chitu
James S. Im
Rodney S. Ruoff
Sung-Yool Choi
Keon Jae Lee
author_facet Insung Choi
Hu Young Jeong
Hyeyoung Shin
Gyeongwon Kang
Myunghwan Byun
Hyungjun Kim
Adrian M. Chitu
James S. Im
Rodney S. Ruoff
Sung-Yool Choi
Keon Jae Lee
author_sort Insung Choi
collection DOAJ
description Laser beam-induced processing is industrially relevant but often challenging to study in terms of underlying phase transformations. Here authors characterize formation of thin, phase-separated carbon and silicon layers on a silicon carbide substrate by laser-induced melting and solidification.
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spelling doaj.art-7777da905a3744438cad55118858ce6b2022-12-21T23:08:59ZengNature PortfolioNature Communications2041-17232016-11-01711710.1038/ncomms13562Laser-induced phase separation of silicon carbideInsung Choi0Hu Young Jeong1Hyeyoung Shin2Gyeongwon Kang3Myunghwan Byun4Hyungjun Kim5Adrian M. Chitu6James S. Im7Rodney S. Ruoff8Sung-Yool Choi9Keon Jae Lee10Department of Materials Science and Engineering, KAISTUNIST Central Research Facilities (UCRF), UNISTGraduate School of Energy, Environment, Water, and Sustainability (EEWS), KAISTGraduate School of Energy, Environment, Water, and Sustainability (EEWS), KAISTDepartment of Materials Science and Engineering, KAISTGraduate School of Energy, Environment, Water, and Sustainability (EEWS), KAISTDepartment of Applied Physics and Applied Mathematics, Program in Materials Science and Engineering, Columbia UniversityDepartment of Applied Physics and Applied Mathematics, Program in Materials Science and Engineering, Columbia UniversityCenter for Multidimensional Carbon Materials, Institute for Basic Science (IBS)School of Electrical Engineering, Graphene/2D Materials Research Center, Center for Advanced Materials Discovery for 3D Display, KAISTDepartment of Materials Science and Engineering, KAISTLaser beam-induced processing is industrially relevant but often challenging to study in terms of underlying phase transformations. Here authors characterize formation of thin, phase-separated carbon and silicon layers on a silicon carbide substrate by laser-induced melting and solidification.https://doi.org/10.1038/ncomms13562
spellingShingle Insung Choi
Hu Young Jeong
Hyeyoung Shin
Gyeongwon Kang
Myunghwan Byun
Hyungjun Kim
Adrian M. Chitu
James S. Im
Rodney S. Ruoff
Sung-Yool Choi
Keon Jae Lee
Laser-induced phase separation of silicon carbide
Nature Communications
title Laser-induced phase separation of silicon carbide
title_full Laser-induced phase separation of silicon carbide
title_fullStr Laser-induced phase separation of silicon carbide
title_full_unstemmed Laser-induced phase separation of silicon carbide
title_short Laser-induced phase separation of silicon carbide
title_sort laser induced phase separation of silicon carbide
url https://doi.org/10.1038/ncomms13562
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