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首页> 外文期刊>CERAMICS INTERNATIONAL >Alkyl ethoxylate assisted liquid phase exfoliation of BN nanosheet and its application as interphase for oxide/oxide composites
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Alkyl ethoxylate assisted liquid phase exfoliation of BN nanosheet and its application as interphase for oxide/oxide composites

机译:烷基乙氧基化辅助液相剥离BN纳米液及其应用作为氧化物/氧化物复合材料的间相互作用

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摘要

An environment-friendly liquid phase exfoliation method assisted with alkyl ethoxylate wetting agent has been developed to prepare highly concentrated hexagonal boron nitride nanosheet (BNNS) colloidal suspensions with loadings of up to similar to 36.3 mg/mL. The exfoliation yield reaches similar to 78.3%. BNNS as thin as similar to 0.7-11.3 nm has been obtained and it retains pristine in-plane crystal structure without chemical bonds to alkyl ethoxylate. The obtained BNNS has been successfully applied to oxide/oxide ceramic composites (SiO2f/SiO2) as an interphase layer between fiber and matrix. The composites with BNNS generally exhibit non-catastrophic failure behaviour with the flexural strength of similar to 40-50 MPa and fracture toughness of similar to 1.68 MPa m(1/2) which is about 50% higher than that of the composites without BNNS interphase. The effect of the BNNS interphase thickness on the mechanical properties of the composites has been studied and the role of BNNS in the toughness enhancement has been discussed. Furthermore, thermal stability of the BNNS interphase against prolonged heat treatment has been examined. Our alkyl ethoxylate assisted liquid phase exfoliation method paves a way for the applications of BNNS in various electronic or optical devices and also for the synthesis of nanocomposites.
机译:已经开发了一种辅助与烷基乙氧基化润湿剂的辅助液相剥离方法,以制备高度浓缩的六方硼氮化物纳米片(BNNS)胶体悬浮液,其载荷最多可达36.3mg / ml。剥离产量达到78.3%。已经获得了与0.7-11.3nm一样薄的BNN,并且它保留原始的面内晶体结构,而不与烷基乙氧基化物的化学键合。所获得的BNN已成功地施加到氧化物/氧化物陶瓷复合材料(SiO 2 F / SiO 2)中作为纤维和基质之间的差异层。具有BNN的复合材料通常表现出非灾难性的失效行为,其弯曲强度类似于40-50MPa和类似于1.68MPa m(1/2)的断裂韧性,其比没有BNN间的复合材料高约50% 。已经研究了BNNS间厚度对复合材料的机械性能的影响,并讨论了BNN在韧性增强中的作用。此外,研究了对延长热处理的BNN间差的热稳定性。我们的烷基乙氧基化辅助液相剥离方法为各种电子或光学装置中的BNN应用铺设了一种方法,也可以用于合成纳米复合材料。

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