4.7 Article

True Molecular Composites: Unusual Structure and Properties of PDMS-MQ Resin Blends

Journal

POLYMERS
Volume 15, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/polym15010048

Keywords

poly(dimethyl siloxane)-rubber molecular composites; SAXS; MQ-resins; mechanical properties

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MQ resin particles significantly enhance the mechanical properties of poly(dimethyl siloxane) and can be used as fillers. The concentration of MQ particles and rubber molecular weight determine the structure and properties of the composites.
Poly(dimethyl siloxane)-MQ rubber molecular composites are easy to prepare, as it does not require a heterophase mixing of ingredients. They are characterized by perfect homogeneity, so they are very promising as rubber materials with controllable functional characteristics. The manuscript reveals that MQ resin particles can significantly, more than by two orders of magnitude, enhance the mechanical properties of poly(dimethyl siloxane), and, as fillers, they are not inferior to aerosils. In the produced materials, MQ particles play a role of the molecular entanglements, so rubber molecular weight and MQ filler concentration are the parameters determining the structure and properties of such composites. Moreover, a need for a saturation of the reactive groups and minimization of the surface energy of MQ particles also determine the size and distribution of the filler at different filler rates. An unusual correlation of the concentration of MQ component and the interparticle spacing was revealed. Based on the extraordinary mechanical properties and structure features, a model of the structure poly(dimethyl siloxane)-rubber molecular composites and of its evolution in the process of stretching, was proposed.

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