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首页> 外文期刊>Small >Ice-Templated Assembly Strategy to Construct 3D Boron Nitride Nanosheet Networks in Polymer Composites for Thermal Conductivity Improvement
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Ice-Templated Assembly Strategy to Construct 3D Boron Nitride Nanosheet Networks in Polymer Composites for Thermal Conductivity Improvement

机译:冰模板化组装策略,可在聚合物复合材料中构建3D氮化硼纳米片网络,以提高导热性

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摘要

Owing to the growing heat removal issue of modern electronic devices, polymer composites with high thermal conductivity have drawn much attention in the past few years. However, a traditional method to enhance the thermal conductivity of the polymers by addition of inorganic fillers usually creates composite with not only limited thermal conductivity but also other detrimental effects due to large amount of fillers required. Here, novel polymer composites are reported by first constructing 3D boron nitride nanosheets (3D-BNNS) network using ice-templated approach and then infiltrating them with epoxy matrix. The obtained polymer composites exhibit a high thermal conductivity (2.85 W m(-1) K-1), a low thermal expansion coeffi cient (24-32 ppm K-1), and an increased glass transition temperature (T-g) at relatively low BNNSs loading (9.29 vol%). These results demonstrate that this approach opens a new avenue for design and preparation of polymer composites with high thermal conductivity. The polymer composites are potentially useful in advanced electronic packaging techniques, namely, thermal interface materials, underfill materials, molding compounds, and organic substrates.
机译:由于现代电子设备越来越多的除热问题,在过去的几年中,具有高导热率的聚合物复合材料备受关注。然而,通过添加无机填料来提高聚合物的导热性的传统方法通常产生不仅具有有限的导热性而且由于需要大量的填料而具有其他有害作用的复合材料。在这里,通过先用冰模板方法构建3D氮化硼纳米片(3D-BNNS)网络,然后用环氧基质渗透它们,从而报道了新型聚合物复合材料。所获得的聚合物复合材料具有较高的导热系数(2.85 W m(-1)K-1),较低的热膨胀系数(24-32 ppm K-1)和相对较低的玻璃化转变温度(Tg) BNNS的装载量(9.29体积%)。这些结果表明,该方法为设计和制备具有高导热率的聚合物复合材料开辟了一条新途径。聚合物复合材料可用于先进的电子包装技术,即热界面材料,底部填充材料,模塑料和有机基材。

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