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超分子自响应纳米复合材料的隧穿原子力显微镜分析

Tunneling Atomic Force Microscopy Analysis of Supramolecular Self-Responsive Nanocomposites.

作者信息

Raimondo Marialuigia, Calabrese Elisa, Binder Wolfgang H, Michael Philipp, Rana Sravendra, Guadagno Liberata

机构信息

Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano, SA, Italy.

Macromolecular Chemistry, Institute of Chemistry, Faculty of Natural Science II, Martin Luther University Halle-Wittenberg, Von-Danckelmann-Platz 4, 06120 Halle, Germany.

出版信息

Polymers (Basel). 2021 Apr 26;13(9):1401. doi: 10.3390/polym13091401.

Abstract

A big step forward for composite application in the sector of structural materials is given by the use of Multi-Wall Carbon Nanotubes (MWCNTs) functionalized with hydrogen bonding moieties, such as barbiturate and thymine, to activate self-healing mechanisms and integrate additional functionalities. These materials with multiple healing properties at the same damaged site, imparted by hydrogen bonds, will also have the potential to improve material reliability, extend the service life, reduce replacement costs, and improve product safety. This revolutionary approach is obtained by integrating the non-covalent interactions coupled with the conventional covalent approach used to cross-link the polymer. The objective of this work is to characterize rubber-toughened supramolecular self-healing epoxy formulations based on unfunctionalized and functionalized MWCNTs using Tunneling Atomic Force Microscopy (TUNA). This advanced technique clearly shows the effect produced by the hydrogen bonding moieties acting as reversible healing elements by their simultaneous donor and acceptor character, and covalently linked to MWCNTs to originate self-healing nanocomposites. In particular, TUNA proved to be very effective for the morphology study of both the unfunctionalized and functionalized carbon nanotube-based conductive networks, thus providing useful insights aimed at understanding the influence of the intrinsic nature of the nanocharge on the final properties of the multifunctional composites.

摘要

在结构材料领域,复合应用向前迈出的重要一步是使用通过氢键部分(如巴比妥酸盐和胸腺嘧啶)功能化的多壁碳纳米管(MWCNT),以激活自愈机制并整合其他功能。这些在同一受损部位具有多种愈合特性的材料,由氢键赋予,还将有可能提高材料可靠性、延长使用寿命、降低更换成本并提高产品安全性。这种革命性的方法是通过将非共价相互作用与用于交联聚合物的传统共价方法相结合而获得的。这项工作的目的是使用隧道原子力显微镜(TUNA)对基于未功能化和功能化MWCNT的橡胶增韧超分子自愈环氧配方进行表征。这种先进技术清楚地显示了作为可逆愈合元素的氢键部分因其同时具有供体和受体特性而产生的效果,并与MWCNT共价连接以形成自愈纳米复合材料。特别是,TUNA被证明对基于未功能化和功能化碳纳米管的导电网络的形态研究非常有效,从而提供了有用的见解,旨在了解纳米电荷的内在性质对多功能复合材料最终性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e053/8123594/3281b77de1a6/polymers-13-01401-g001.jpg

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