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多面体低聚倍半硅氧烷与单宁酸相遇:一种用于碳纤维复合材料界面改性的温和高效策略。

Polyhedral Oligomeric Silsesquioxane Encountering Tannic Acid: A Mild and Efficient Strategy for Interface Modification on Carbon Fiber Composites.

作者信息

Wu Dongliang, Liu Xiaodong, Sheng Yujing, Wu Nannan, Liu Lei, Dong Qi, Wang Maoju, Zhang Ruliang

机构信息

School of Materials Science and Engineering, Shandong University of Science and Technology, 266590 Qingdao, People's Republic of China.

Qingdao Huashijie Environment Technology Co.,Ltd., 266590 Qingdao, People's Republic of China.

出版信息

Langmuir. 2022 Jul 12;38(27):8334-8341. doi: 10.1021/acs.langmuir.2c00866. Epub 2022 Jun 30.

Abstract

Designing and controlling the interfacial chemistry and microstructure of the carbon fiber is an important step in the surface modification and preparation of high-performance composites. To address this issue, a tannic acid (TA)/polyhedral oligomeric silsesquioxane (POSS) hybrid microstructure, similar to the topological structure, is designed on the fiber surface by one-pot synthesis under mild conditions. Fourier transform infrared (FT-IR), X-ray photoelectron spectroscopy (XPS), and atomic force microscopy (AFM) show that the functionality and surface roughness of the fiber are significantly broadened. Correspondingly, the tensile strength (TS) of CF-TA/POSS and interlaminar shear strength (ILSS) of CF-TA/POSS-based composites increased by 18 and 34%, respectively. Following that, a failure mechanism study is conducted to demonstrate the interphase structure containing TA/POSS, which is quite critical in optimizing the mechanical performance of the multiscale composites. Moreover, the strategy for the use of TA for constructing a robust coating to replace the traditional modification without affecting the fiber intrinsic strength is an improved design and provides a new idea for the development of high-performance composites.

摘要

设计和控制碳纤维的界面化学和微观结构是高性能复合材料表面改性和制备的重要步骤。为了解决这个问题,通过温和条件下的一锅合成法在纤维表面设计了一种类似于拓扑结构的单宁酸(TA)/多面体低聚倍半硅氧烷(POSS)杂化微观结构。傅里叶变换红外光谱(FT-IR)、X射线光电子能谱(XPS)和原子力显微镜(AFM)表明,纤维的官能度和表面粗糙度显著提高。相应地,CF-TA/POSS的拉伸强度(TS)和基于CF-TA/POSS的复合材料的层间剪切强度(ILSS)分别提高了18%和34%。在此基础上,进行了失效机理研究,以证明含有TA/POSS的界面结构,这对于优化多尺度复合材料的力学性能至关重要。此外,使用TA构建坚固涂层以替代传统改性而不影响纤维固有强度的策略是一种改进的设计,为高性能复合材料的开发提供了新思路。

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