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Preparation and properties of boron nitride nanosheets/cellulose nanofiber shear-oriented films with high thermal conductivity

机译:具有高导热率的氮化硼氮化硼纳米型纳米纤维型剪切薄膜的制备与性能

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摘要

A highly thermally conductive boron nitride nanosheets/cellulose nanofiber (BNNS/CNF) oriented film was prepared by doctor blading method via mechanical shear-induced orientation. The SEM images for cross-sectional parts showed that BNNS were well aligned within the film, forming a good layered structure. The XRD results further confirmed the high orientation effect of BNNS. Due to the excellent thermal stability of BNNS and its good physical barrier effect on the matrix after the orientation treatment, the thermal stability of shearoriented films was largely improved. Resulting from the shear-induced orientation, BNNS were closely contacted with each other, forming a good thermally conductive pathway within the CNF matrix. Thus the influence of the interfacial thermal resistance was dramatically reduced, and the thermal conductivity of shear-oriented films increased in proportion to filler loading. With 50 wt% BNNS, the thermal conductivity of the shear-oriented film reached 24.66 W/(m.K), which exhibited 1106% enhancement compared to the pure CNF.
机译:通过机械剪切诱导的取向通过培养型叶片方法制备高度导热的硼氮化族纳米型/纤维素纳米纤维(BNNS / CNF)取向膜。横截面部件的SEM图像显示,BNN在膜内良好对准,形成良好的层状结构。 XRD结果进一步证实了BNN的高取向效果。由于BNNS的优异热稳定性及其在取向处理后对基质的良好物理屏障效应,因此大大提高了抗噬膜的热稳定性。由剪切引起的取向引起的,BNN彼此紧密接触,形成CNF基质内的良好的导热途径。因此,界面热阻的影响显着降低,并且剪切薄膜的导热率与填充载荷的比例增加。含有50wt%的BNN,定向薄膜的导热率达到24.66W /(M.K),与纯CNF相比表现出1106%的增强。

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