4.7 Review

MXene-Based Ink Design for Printed Applications

Journal

NANOMATERIALS
Volume 12, Issue 23, Pages -

Publisher

MDPI
DOI: 10.3390/nano12234346

Keywords

MXene; ink; printing; 2D material

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This paper comprehensively reviews the recent advancements in the properties, applications, and future prospects of inks based on two-dimensional MXene sheets. It provides an introduction to the chemical and physical properties of MXenes, formulation and preparation of MXene inks, and their developments in energy, health, and sensing applications. The review also highlights the research pitfalls, challenges, and future directions in this area.
MXenes are a class of two-dimensional nanomaterials with a rich chemistry, hydrophilic surface and mechano-ceramic nature, and have been employed in a wide variety of applications ranging from medical and sensing devises to electronics, supercapacitors, electromagnetic shielding, and environmental applications, to name a few. To date, the main focus has mostly been paid to studying the chemical and physical properties of MXenes and MXene-based hybrids, while relatively less attention has been paid to the optimal application forms of these materials. It has been frequently observed that MXenes show great potential as inks when dispersed in solution. The present paper aims to comprehensively review the recent knowledge about the properties, applications and future horizon of inks based on 2D MXene sheets. In terms of the layout of the current paper, 2D MXenes have briefly been presented and followed by introducing the formulation of MXene inks, the process of turning MAX to MXene, and ink compositions and preparations. The chemical, tribological and rheological properties have been deeply discussed with an eye to the recent developments of the MXene inks in energy, health and sensing applications. The review ends with a summary of research pitfalls, challenges, and future directions in this area.

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