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Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control

The high-volume synthesis of two-dimensional (2D) materials in the form of platelets is desirable for various applications. While water is considered an ideal dispersion medium, due to its abundance and low cost, the hydrophobicity of platelet surfaces has prohibited its widespread use. Here we exfo...

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Autores principales: Kim, Jinseon, Kwon, Sanghyuk, Cho, Dae-Hyun, Kang, Byunggil, Kwon, Hyukjoon, Kim, Youngchan, Park, Sung O., Jung, Gwan Yeong, Shin, Eunhye, Kim, Wan-Gu, Lee, Hyungdong, Ryu, Gyeong Hee, Choi, Minseok, Kim, Tae Hyeong, Oh, Junghoon, Park, Sungjin, Kwak, Sang Kyu, Yoon, Suk Wang, Byun, Doyoung, Lee, Zonghoon, Lee, Changgu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Pub. Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4579837/
https://www.ncbi.nlm.nih.gov/pubmed/26369895
http://dx.doi.org/10.1038/ncomms9294
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author Kim, Jinseon
Kwon, Sanghyuk
Cho, Dae-Hyun
Kang, Byunggil
Kwon, Hyukjoon
Kim, Youngchan
Park, Sung O.
Jung, Gwan Yeong
Shin, Eunhye
Kim, Wan-Gu
Lee, Hyungdong
Ryu, Gyeong Hee
Choi, Minseok
Kim, Tae Hyeong
Oh, Junghoon
Park, Sungjin
Kwak, Sang Kyu
Yoon, Suk Wang
Byun, Doyoung
Lee, Zonghoon
Lee, Changgu
author_facet Kim, Jinseon
Kwon, Sanghyuk
Cho, Dae-Hyun
Kang, Byunggil
Kwon, Hyukjoon
Kim, Youngchan
Park, Sung O.
Jung, Gwan Yeong
Shin, Eunhye
Kim, Wan-Gu
Lee, Hyungdong
Ryu, Gyeong Hee
Choi, Minseok
Kim, Tae Hyeong
Oh, Junghoon
Park, Sungjin
Kwak, Sang Kyu
Yoon, Suk Wang
Byun, Doyoung
Lee, Zonghoon
Lee, Changgu
author_sort Kim, Jinseon
collection PubMed
description The high-volume synthesis of two-dimensional (2D) materials in the form of platelets is desirable for various applications. While water is considered an ideal dispersion medium, due to its abundance and low cost, the hydrophobicity of platelet surfaces has prohibited its widespread use. Here we exfoliate 2D materials directly in pure water without using any chemicals or surfactants. In order to exfoliate and disperse the materials in water, we elevate the temperature of the sonication bath, and introduce energy via the dissipation of sonic waves. Storage stability greater than one month is achieved through the maintenance of high temperatures, and through atomic and molecular level simulations, we further discover that good solubility in water is maintained due to the presence of platelet surface charges as a result of edge functionalization or intrinsic polarity. Finally, we demonstrate inkjet printing on hard and flexible substrates as a potential application of water-dispersed 2D materials.
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spelling pubmed-45798372015-10-01 Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control Kim, Jinseon Kwon, Sanghyuk Cho, Dae-Hyun Kang, Byunggil Kwon, Hyukjoon Kim, Youngchan Park, Sung O. Jung, Gwan Yeong Shin, Eunhye Kim, Wan-Gu Lee, Hyungdong Ryu, Gyeong Hee Choi, Minseok Kim, Tae Hyeong Oh, Junghoon Park, Sungjin Kwak, Sang Kyu Yoon, Suk Wang Byun, Doyoung Lee, Zonghoon Lee, Changgu Nat Commun Article The high-volume synthesis of two-dimensional (2D) materials in the form of platelets is desirable for various applications. While water is considered an ideal dispersion medium, due to its abundance and low cost, the hydrophobicity of platelet surfaces has prohibited its widespread use. Here we exfoliate 2D materials directly in pure water without using any chemicals or surfactants. In order to exfoliate and disperse the materials in water, we elevate the temperature of the sonication bath, and introduce energy via the dissipation of sonic waves. Storage stability greater than one month is achieved through the maintenance of high temperatures, and through atomic and molecular level simulations, we further discover that good solubility in water is maintained due to the presence of platelet surface charges as a result of edge functionalization or intrinsic polarity. Finally, we demonstrate inkjet printing on hard and flexible substrates as a potential application of water-dispersed 2D materials. Nature Pub. Group 2015-09-15 /pmc/articles/PMC4579837/ /pubmed/26369895 http://dx.doi.org/10.1038/ncomms9294 Text en Copyright © 2015, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Kim, Jinseon
Kwon, Sanghyuk
Cho, Dae-Hyun
Kang, Byunggil
Kwon, Hyukjoon
Kim, Youngchan
Park, Sung O.
Jung, Gwan Yeong
Shin, Eunhye
Kim, Wan-Gu
Lee, Hyungdong
Ryu, Gyeong Hee
Choi, Minseok
Kim, Tae Hyeong
Oh, Junghoon
Park, Sungjin
Kwak, Sang Kyu
Yoon, Suk Wang
Byun, Doyoung
Lee, Zonghoon
Lee, Changgu
Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
title Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
title_full Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
title_fullStr Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
title_full_unstemmed Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
title_short Direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
title_sort direct exfoliation and dispersion of two-dimensional materials in pure water via temperature control
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4579837/
https://www.ncbi.nlm.nih.gov/pubmed/26369895
http://dx.doi.org/10.1038/ncomms9294
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