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  5. Universal Ligands for Dispersion of Two-Dimensional MXene in Organic Solvents

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Article
en
2022

Universal Ligands for Dispersion of Two-Dimensional MXene in Organic Solvents

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en
2022
Vol 17 (2)
Vol. 17
DOI: 10.1021/acsnano.2c08209

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Yury Gogotsi
Yury Gogotsi

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Tae Yun Ko
Daesin Kim
Seon Joon Kim
+14 more

Abstract

Ligands can control the surface chemistry, physicochemical properties, processing, and applications of nanomaterials. MXenes are the fastest growing family of two-dimensional (2D) nanomaterials, showing promise for energy, electronic, and environmental applications. However, complex oxidation states, surface terminal groups, and interaction with the environment have hindered the development of organic ligands suitable for MXenes. Here, we demonstrate a simple, fast, scalable, and universally applicable ligand chemistry for MXenes using alkylated 3,4-dihydroxy-l-phenylalanine (ADOPA). Due to the strong hydrogen-bonding and π-electron interactions between the catechol head and surface terminal groups of MXenes and the presence of a hydrophobic fluorinated alkyl tail compatible with organic solvents, the ADOPA ligands functionalize MXene surfaces under mild reaction conditions without sacrificing their properties. Stable colloidal solutions and highly concentrated liquid crystals of various MXenes, including Ti2CTx, Nb2CTx, V2CTx, Mo2CTx, Ti3C2Tx, Ti3CNTx, Mo2TiC2Tx, Mo2Ti2C3Tx, and Ti4N3Tx, have been produced in various organic solvents. Such products offer excellent electrical conductivity, improved oxidation stability, and excellent processability, enabling applications in flexible electrodes and electromagnetic interference shielding.

How to cite this publication

Tae Yun Ko, Daesin Kim, Seon Joon Kim, Hyerim Kim, Arun S. Nissimagoudar, Seung‐Cheol Lee, Xiaobo Lin, Peter T. Cummings, Sehyun Doo, Seongmin Park, Tufail Hassan, Taegon Oh, Ari Chae, Jihoon Lee, Yury Gogotsi, Insik In, Chong Min Koo (2022). Universal Ligands for Dispersion of Two-Dimensional MXene in Organic Solvents. , 17(2), DOI: https://doi.org/10.1021/acsnano.2c08209.

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Publication Details

Type

Article

Year

2022

Authors

17

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acsnano.2c08209

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