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Polymer nanocomposites process description

Thus, the structural model for polyethylene and nanocomposites on its basis creep process description is offered, taking into account the indicated polymeric materials structure heterogeneity. This treatment is given within the frameworks of the cluster model of polymers amorphous state structure and shown the good correspondence wit experiment [7]. [Pg.238]

This chapter is organised as follows Following this introduction as section 1, a brief description of the synthesis and characterisation techniques used for the as-synthesised polymer capped selenide nanopartides is given as section 2. In section 3, the mechanism of the reaction, results and discussion of the different selenide nanocomposites obtained using different polymers are given. Section 4, the last section gives a summary of the whole process, followed by references. Acknowledgements are cited before references. [Pg.166]

To date, silica has been the focus of the majority of studies on oxide-based nanos-tructured materials. One of the major reasons for this is its easy processability, high chemical inertness and exceptional colloidal stability. Moreover, silica can be processed as a thin film with controllable porosity and optical transparency. All these properties make silica ideal for use in model systems, and it is widely used in many industrial areas ranging from paints and drug delivery to composite materials. Zou et al. have recently published a detailed review on the preparation, characterization, properties, and applications of polymer/silica nanocomposites and the reader is referred to this review for in-depth description of the various synthetic routes [16]. [Pg.58]


See other pages where Polymer nanocomposites process description is mentioned: [Pg.3337]    [Pg.430]    [Pg.236]    [Pg.94]    [Pg.249]    [Pg.38]    [Pg.386]    [Pg.78]    [Pg.113]    [Pg.57]    [Pg.132]    [Pg.164]    [Pg.236]    [Pg.257]    [Pg.46]    [Pg.398]    [Pg.464]    [Pg.529]   
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