Lee Seonmin, Kim Jooheon
School of Chemical Engineering & Materials Science, Chung-Ang University, Seoul 156-756, Korea.
Department of Intelligent Energy and Industry, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 156-756, Korea.
Polymers (Basel). 2021 Jan 26;13(3):379. doi: 10.3390/polym13030379.
Aggregated boron nitride (ABN) is advantageous for increasing the packing and thermal conductivity of the matrix in composite materials, but can deteriorate the mechanical properties by breaking during processing. In addition, there are few studies on the use of TiC MXene as thermally conductive fillers. Herein, the development of a novel composite film is described. It incorporates MXene and ABN into poly(vinyl alcohol) (PVA) to achieve a high thermal conductivity. Polysilazane (PSZ)-coated ABN formed a heat conduction path in the composite film, and MXene supported it to further improve the thermal conductivity. The prepared polymer composite film is shown to provide through-plane and in-plane thermal conductivities of 1.51 and 4.28 W/mK at total filler contents of 44 wt.%. The composite film is also shown to exhibit a tensile strength of 11.96 MPa, which is much greater than that without MXene. Thus, it demonstrates that incorporating MXene as a thermally conductive filler can enhance the thermal and mechanical properties of composite films.
团聚型氮化硼(ABN)有利于提高复合材料基体的堆积密度和热导率,但在加工过程中会因破碎而使机械性能变差。此外,关于使用TiC MXene作为导热填料的研究很少。在此,描述了一种新型复合膜的开发。它将MXene和ABN纳入聚乙烯醇(PVA)中以实现高导热率。聚硅氮烷(PSZ)包覆的ABN在复合膜中形成了热传导路径,MXene对其起到支撑作用,进一步提高了热导率。所制备的聚合物复合膜在总填料含量为44 wt.%时,其面内热导率和平面内热导率分别为1.51和4.28 W/mK。该复合膜还表现出11.96 MPa的拉伸强度,远高于不含MXene的复合膜。因此,这表明将MXene作为导热填料掺入可以提高复合膜的热性能和机械性能。