Litcius/Paper detail

Synergistical thermal modulation function of 2D Ti3C2 MXene composite nanosheets via interfacial structure modification

Yuxin Ouyang, Lin Qiu, Yangyang Bai, Wei Yu, Yanhui Feng

2022iScience25 citationsDOIOpen Access PDF

Abstract

MXene nanosheets with either GO or CNF fillers were fabricated by using the vacuum-assisted filtration method. It was found that the addition of GO and CNF enlarged the interlayer spacing of the MXene layers, bringing about the opportunity for changeable spatial configuration of fillers and the thermal regulation function. If the GO nanosheets were interspersed parallel to the MXene layers, strong interference of increasing oxygen-containing functional group suppresses the out-of-plane thermal transport, resulting in the thermal conductivity decreasing from 0.5 W/(m·K) to 0.31 W/(m·K) for 20 wt% GO addition. Moreover, CNFs formed out-of-plane protruding on the surface of MXene nanosheets, resulting in the thermal conductivity increasing to 0.81 W/(m·K) for 20 wt% CNF addition. This discovery navigates how to prepare MXene composites with customized thermal properties.

Topics & Concepts

Thermal conductivityMaterials scienceComposite numberThermalNanocompositeNanotechnologySurface modificationComposite materialChemical engineeringPhysicsEngineeringMeteorologyMXene and MAX Phase MaterialsGraphene research and applicationsThermal properties of materials