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Updated: Jan 3, 2026

Fabrication of Ti3C2 MXene Microelectrode Arrays for In Vivo Neural Recording
Published on: February 12, 2020
Nonpolar Organic Dispersion of 2D Ti3C2T MXene Flakes via Simultaneous Interfacial Chemical Grafting and Phase
Daesin Kim1,2, Tae Yun Ko2, Hyerim Kim1,2
1KU-KIST Graduate School of Converging Science and Technology , Korea University , Seoul 02841 , Republic of Korea.
Abstract:
Herein, we demonstrate a simple and versatile way for preparing stable Ti3C2T MXene dispersions in nonpolar organic solvents through a simultaneous interfacial chemical grafting reaction and phase transfer method. Alkylphosphonic acid ligands were chemically grafted on the hydroxyl terminal groups of Ti3C2T flakes at the liquid-liquid interface between water and water-immiscible organic medium to form a covalent Ti-O-P bond via interfacial nucleophilic addition and sequential condensation reaction at room temperature; the surface-functionalized Ti3C2T flakes concurrently migrated from the aqueous phase to the organic phase. Unlike conventional surface chemical modification methods that require many complex and tedious steps, this is a simple and easy process for fabricating a Ti3C2T organic dispersion in various organic solvents, from highly polar to nonpolar. The nonpolar Ti3C2T dispersion in chloroform also exhibits strong oxidation resistance and stable long-term storage. This approach provides an opportunity for preparing MXene nanocomposites with nonpolar polymeric matrices that are soluble in organic media for future applications such as stretchable electrode.

