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Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications

The practical application of 2D MXenes in electronic and energy fields has been hindered by the severe variation in the quality of MXene products depending on the parent MAX phases, manufacturing techniques, and preparation parameters. In particular, their synthesis has been impeded by the lack of s...

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Autores principales: Seok, Shi-Hyun, Choo, Seungjun, Kwak, Jinsung, Ju, Hyejin, Han, Ju-Hyoung, Kang, Woo-Seok, Lee, Joonsik, Kim, Se-Yang, Lee, Do Hee, Lee, Jungsoo, Wang, Jaewon, Song, Seunguk, Jo, Wook, Jung, Byung Mun, Chae, Han Gi, Son, Jae Sung, Kwon, Soon-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417611/
https://www.ncbi.nlm.nih.gov/pubmed/36131735
http://dx.doi.org/10.1039/d0na00398k
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author Seok, Shi-Hyun
Choo, Seungjun
Kwak, Jinsung
Ju, Hyejin
Han, Ju-Hyoung
Kang, Woo-Seok
Lee, Joonsik
Kim, Se-Yang
Lee, Do Hee
Lee, Jungsoo
Wang, Jaewon
Song, Seunguk
Jo, Wook
Jung, Byung Mun
Chae, Han Gi
Son, Jae Sung
Kwon, Soon-Yong
author_facet Seok, Shi-Hyun
Choo, Seungjun
Kwak, Jinsung
Ju, Hyejin
Han, Ju-Hyoung
Kang, Woo-Seok
Lee, Joonsik
Kim, Se-Yang
Lee, Do Hee
Lee, Jungsoo
Wang, Jaewon
Song, Seunguk
Jo, Wook
Jung, Byung Mun
Chae, Han Gi
Son, Jae Sung
Kwon, Soon-Yong
author_sort Seok, Shi-Hyun
collection PubMed
description The practical application of 2D MXenes in electronic and energy fields has been hindered by the severe variation in the quality of MXene products depending on the parent MAX phases, manufacturing techniques, and preparation parameters. In particular, their synthesis has been impeded by the lack of studies reporting the synthesis of high-quality parent MAX phases. In addition, controllable and uniform deposition of 2D MXenes on various large-scale substrates is urgently required to use them practically. Herein, a method of pelletizing raw materials could synthesize a stoichiometric Ti(3)AlC(2) MAX phase with high yield and processability, and fewer impurities. The Ti(3)AlC(2) could be exfoliated into 1–2-atom-thick 2D Ti(3)C(2)T(x) flakes, and their applicability was confirmed by the deposition and additional alignment of the 2D flakes with tunable thickness and electrical properties. Moreover, a practical MXene ink was fabricated with rheological characterization. MXene ink exhibited much better thickness uniformity while retaining excellent electrical performances (e.g., sheet resistance, electromagnetic interference shielding ability) as those of a film produced by vacuum filtration. The direct functional integration of MXenes on various substrates is expected to initiate new and unexpected MXene-based applications.
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spelling pubmed-94176112022-09-20 Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications Seok, Shi-Hyun Choo, Seungjun Kwak, Jinsung Ju, Hyejin Han, Ju-Hyoung Kang, Woo-Seok Lee, Joonsik Kim, Se-Yang Lee, Do Hee Lee, Jungsoo Wang, Jaewon Song, Seunguk Jo, Wook Jung, Byung Mun Chae, Han Gi Son, Jae Sung Kwon, Soon-Yong Nanoscale Adv Chemistry The practical application of 2D MXenes in electronic and energy fields has been hindered by the severe variation in the quality of MXene products depending on the parent MAX phases, manufacturing techniques, and preparation parameters. In particular, their synthesis has been impeded by the lack of studies reporting the synthesis of high-quality parent MAX phases. In addition, controllable and uniform deposition of 2D MXenes on various large-scale substrates is urgently required to use them practically. Herein, a method of pelletizing raw materials could synthesize a stoichiometric Ti(3)AlC(2) MAX phase with high yield and processability, and fewer impurities. The Ti(3)AlC(2) could be exfoliated into 1–2-atom-thick 2D Ti(3)C(2)T(x) flakes, and their applicability was confirmed by the deposition and additional alignment of the 2D flakes with tunable thickness and electrical properties. Moreover, a practical MXene ink was fabricated with rheological characterization. MXene ink exhibited much better thickness uniformity while retaining excellent electrical performances (e.g., sheet resistance, electromagnetic interference shielding ability) as those of a film produced by vacuum filtration. The direct functional integration of MXenes on various substrates is expected to initiate new and unexpected MXene-based applications. RSC 2020-11-23 /pmc/articles/PMC9417611/ /pubmed/36131735 http://dx.doi.org/10.1039/d0na00398k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Seok, Shi-Hyun
Choo, Seungjun
Kwak, Jinsung
Ju, Hyejin
Han, Ju-Hyoung
Kang, Woo-Seok
Lee, Joonsik
Kim, Se-Yang
Lee, Do Hee
Lee, Jungsoo
Wang, Jaewon
Song, Seunguk
Jo, Wook
Jung, Byung Mun
Chae, Han Gi
Son, Jae Sung
Kwon, Soon-Yong
Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications
title Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications
title_full Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications
title_fullStr Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications
title_full_unstemmed Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications
title_short Synthesis of high quality 2D carbide MXene flakes using a highly purified MAX precursor for ink applications
title_sort synthesis of high quality 2d carbide mxene flakes using a highly purified max precursor for ink applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417611/
https://www.ncbi.nlm.nih.gov/pubmed/36131735
http://dx.doi.org/10.1039/d0na00398k
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