期刊
ACS NANO
卷 16, 期 2, 页码 1734-1758出版社
AMER CHEMICAL SOC
DOI: 10.1021/acsnano.1c09925
关键词
MXene; sensors; piezoresistive; synthesis; assembly methods; structures; applications; multifunctional integration
类别
资金
- Natural Science Foundation of Anhui Province [2008085QA27, 2008085QA41]
- Foundation for the Introduction of High-Level Talents of Anhui University [S020118002/097]
This work reviews the preparation methods, basic properties, and assembly methods of MXenes and their recent developments in piezoresistive sensor applications. It categorizes the recent developments of MXene-based flexible piezoresistive sensors into one-dimensional fibrous, two-dimensional planar, and three-dimensional sensors according to their various structures. The trends of multifunctional integration of MXene-based pressure sensors are also summarized. The review highlights the opportunities and challenges for MXene-based pressure sensors and the great prospects of MXenes in the field of pressure sensor applications.
MXenes have received increasing attention due to their two-dimensional layered structure, high conductivity, hydrophilicity, and large specific surface area. Because of these distinctive advantages, MXenes are considered as very competitive pressure-sensitive materials in applications of flexible piezoresistive sensors. This work reviews the preparation methods, basic properties, and assembly methods of MXenes and their recent developments in piezoresistive sensor applications. The recent developments of MXene-based flexible piezoresistive sensors can be categorized into one-dimensional fibrous, two-dimensional planar, and three-dimensional sensors according to their various structures. The trends of multifunctional integration of MXene-based pressure sensors are also summarized. Finally, we end this review by describing the opportunities and challenges for MXene-based pressure sensors and the great prospects of MXenes in the field of pressure sensor applications.
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