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海泡石橡胶纳米复合材料中的混合界面:自组装纳米结构在控制耗散现象中的作用。

Hybrid Interface in Sepiolite Rubber Nanocomposites: Role of Self-Assembled Nanostructure in Controlling Dissipative Phenomena.

作者信息

Cobani Elkid, Tagliaro Irene, Geppi Marco, Giannini Luca, Leclère Philippe, Martini Francesca, Nguyen Thai Cuong, Lazzaroni Roberto, Scotti Roberto, Tadiello Luciano, Di Credico Barbara

机构信息

Department of Materials Science, INSTM, University of Milano-Bicocca, Via R. Cozzi, 55, 20125 Milano, Italy.

Dipartimento di Chimica e Chimica Industriale, University of Pisa, Via Moruzzi 13, 56124 Pisa, Italy.

出版信息

Nanomaterials (Basel). 2019 Mar 27;9(4):486. doi: 10.3390/nano9040486.

Abstract

Sepiolite (Sep)⁻styrene butadiene rubber (SBR) nanocomposites were prepared by using nano-sized sepiolite (NS-SepS9) fibers, obtained by applying a controlled surface acid treatment, also in the presence of a silane coupling agent (NS-SilSepS9). Sep/SBR nanocomposites were used as a model to study the influence of the modified sepiolite filler on the formation of immobilized rubber at the clay-rubber interface and the role of a self-assembled nanostructure in tuning the mechanical properties. A detailed investigation at the macro and nanoscale of such self-assembled structures was performed in terms of the organization and networking of Sep fibers in the rubber matrix, the nature of both the filler⁻filler and filler⁻rubber interactions, and the impact of these features on the reduced dissipative phenomena. An integrated multi-technique approach, based on dynamic measurements, nuclear magnetic resonance analysis, and morphological investigation, assessed that the macroscopic mechanical properties of clay nanocomposites can be remarkably enhanced by self-assembled filler structures, whose formation can be favored by manipulating the chemistry at the hybrid interfaces between the clay particles and the polymers.

摘要

通过使用经过可控表面酸处理得到的纳米级海泡石(NS-SepS9)纤维,在硅烷偶联剂(NS-SilSepS9)存在的情况下制备了海泡石(Sep)-丁苯橡胶(SBR)纳米复合材料。Sep/SBR纳米复合材料被用作模型,以研究改性海泡石填料对在黏土-橡胶界面处固定橡胶形成的影响以及自组装纳米结构在调节力学性能方面的作用。从海泡石纤维在橡胶基体中的组织和网络结构、填料-填料以及填料-橡胶相互作用的性质,以及这些特征对减少耗散现象的影响等方面,对这种自组装结构进行了宏观和纳米尺度的详细研究。基于动态测量、核磁共振分析和形态学研究的综合多技术方法评估得出,黏土纳米复合材料的宏观力学性能可通过自组装填料结构得到显著增强,通过控制黏土颗粒与聚合物之间混合界面的化学性质可促进这种结构的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91ed/6523625/080982c218ee/nanomaterials-09-00486-sch001.jpg

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