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Titlebook: Eco-friendly Polymer Nanocomposites; Processing and Prope Vijay Kumar Thakur,Manju Kumari Thakur Book 2015 Springer India 2015 Eco-friendly

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发表于 2025-3-26 22:21:49 | 显示全部楼层
Multicomponent Polymer Composite/Nanocomposite Systems Using Polymer Matrices from Sustainable Rened properties were further investigated through Fourier Transform Infrared (FTIR) spectroscopy, X-ray diffraction, scanning electron microscopy (SEM), and TG/DTG/DTA simultaneous thermal analysis methods, as well as by water uptake and opacity measurements. The results are presented in this chapter.
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Green Synthesis of Polymer Composites/Nanocomposites Using Vegetable Oil,) synthetic polymers from natural monomers, such as polylactic acid; and (3) polymers from microbial fermentation. In this chapter we have discussed about the different types of polymer composites obtained from the vegetable oil and applications of the polymer composites.
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Biodegradable Starch Nanocomposites,of the materials. The discussion will be focused on structural, mechanical, and barrel properties as well as on degradation, antibacterial and antioxidant activities. Finally, we will discuss our perspectives on how future research should be oriented to contribute in the substitution of synthetic materials with new econanocomposites.
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Biodegradable Polymer/Clay Nanocomposites,e combination of these two factors greatly affects the resulting structure of the nano composite, being always the goal to obtain a good dispersion of the reinforcement within the polymeric matrix. Challenges in processing conditions have been analyzed and the prospective for future research has been addressed.
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,Erweiterungen endlicher Körper,lly biodegradable and renewable. The major attractions of EPN are that they are environmentally friendly, sustainable, and degradable. These polymer composites can be easily composted or disposed without harming the environment. Some efforts have been made on attaining biodegradable reinforcing fill
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Algemene Wet Bijzondere Ziektekosteniew of the research done on starch and starch nanocomposites. In the case of nanocomposites based on starch, special attention will be given to the influence of starch nanoparticles, cellulose whiskers, zinc oxide nanorods, antioxidants, and antimicrobial inclusion on the physicochemical properties
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https://doi.org/10.1007/978-3-642-61033-2spersed nanocomposites with improved mechanical properties. Different strategies for optimization of biodegradable polymer-clay nanocomposites were identified and treated herein. The two most important strategies are based on the chemical modification of the clay and on the processing conditions. Th
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