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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Enhanced Thermal Conductivity of Bioinspired Nanofibrillated Cellulose Hybrid Films Based on Graphene Sheets and Nanodiamonds
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Enhanced Thermal Conductivity of Bioinspired Nanofibrillated Cellulose Hybrid Films Based on Graphene Sheets and Nanodiamonds

机译:基于石墨烯片和纳米金刚石的生物透露纳米纤维纤维素杂交膜的增强导热性

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摘要

Polymer materials with high thermal conductivities play an important role in the development of next-generation electronics. In this work, high thermally conductive nanofibrillated cellulose (NFC) hybrid films based on nanodiamonds (NDs) and graphene sheets (GSs) were prepared by a facile vacuum-filtration self-assembly process. Inspired by the structure of nacre, zero-dimensional NDs, two-dimensional GSs, and one-dimensional NFC were used to build hierarchical structures, which lead to excellent mechanical properties of the hybrid films. More importantly, an efficient thermally conductive pathway, involving NDs and GSs, endows the hybrid films with a much higher in-plane thermal conductivity. At a filler content of 10 wt %, the in-plane thermal conductivity of the f-C/ND/G hybrid film could reach 14.35 W.m(-1).K-1, which is at a high level compared with other published studies. This hybrid film exhibits significant thermal conductivity combined with excellent mechanical properties that can be applied to portable electronic equipment as a lateral heat spreader.
机译:具有高导热性的高分子材料在下一代电子产品的发展中起着重要作用。在这项工作中,通过容易真空过滤自组装方法制备基于纳米二胺(NDS)和石墨烯片(GSS)的高导热纳米纤维纤维素(NFC)杂化膜。通过纳释结构,零维NDS,二维GSS和一维NFC的灵感来构建分层结构,这导致了混合膜的优异机械性能。更重要的是,涉及NDS和GSS的有效的导热途径,赋予混合膜,具有更高的面内导热率。在10wt%的填料含量下,与其他公开的研究相比,F-C / Nd / G杂种膜的面内导热率可以达到14.35W以下(-1).k-1,其高级别。该混合膜具有显着的导热性,其与优异的机械性能相结合,其可以应用于便携式电子设备作为横向散热器。

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