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氮化硼纳米片增强的具有优异热管理性能的纤维素纳米纤维气凝胶。

Boron nitride-nanosheet enhanced cellulose nanofiber aerogel with excellent thermal management properties.

机构信息

R&D, China Tobacco Yunnan Industrial Co., Ltd, Kunming 650231, China.

R&D, China Tobacco Yunnan Industrial Co., Ltd, Kunming 650231, China.

出版信息

Carbohydr Polym. 2020 Aug 1;241:116425. doi: 10.1016/j.carbpol.2020.116425. Epub 2020 May 11.

Abstract

Boron nitride nanosheets (BNNSs) are desirable materials for thermal management applications owing to their excellent thermal conductivity. Such property also related to the increased thermal transfer efficiency per unit mass, which can be improved by constructing three-dimensional (3D) structures. Cellulose nanofibers (CNFs) are often used to prepare 3D skeletons and stabilize the dispersion of inorganic fillers. Therefore, CNF/BNNS aerogels were prepared to disperse BNNS in a 3D network. CNF/BNNS aerogel exhibited a thermal conductivity of 0.57 W m K, which is an enhancement of 443 % compared to 0.105 W m K of CNF aerogel. The surface temperature changes of the aerogels were confirmed a strong thermal management capacity. The BNNSs also resulted in the compressive strength increased from 0.25 MPa (CNF aerogel) to 0.37 MPa (CNF/BNNS aerogel). This study provides an effective strategy for the preparation of cellulose-based nanocomposite aerogels with excellent thermal management properties and mechanical properties.

摘要

氮化硼纳米片(BNNS)由于其优异的导热性能,是热管理应用中理想的材料。这种性能还与单位质量的热传递效率的提高有关,通过构建三维(3D)结构可以提高这种效率。纤维素纳米纤维(CNF)通常用于制备 3D 骨架并稳定无机填料的分散。因此,制备了 CNF/BNNS 气凝胶以在 3D 网络中分散 BNNS。CNF/BNNS 气凝胶的导热系数为 0.57 W/mK,与 CNF 气凝胶的 0.105 W/mK 相比,提高了 443%。气凝胶的表面温度变化证实了其具有很强的热管理能力。BNNS 还使压缩强度从 0.25 MPa(CNF 气凝胶)增加到 0.37 MPa(CNF/BNNS 气凝胶)。本研究为制备具有优异热管理性能和机械性能的纤维素基纳米复合气凝胶提供了一种有效的策略。

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