跳到主要导航 跳到搜索 跳到主要内容

Soy protein-based polymer nanocomposites

  • Jin Huang*
  • , Ning Lin
  • , Yun Chen
  • , Peter R. Chang
  • , Jiahui Yu
  • *此作品的通讯作者
  • Wuhan University of Technology
  • Wuhan University
  • Agriculture and Agri-Food Canada

科研成果: 书/报告/会议事项章节章节同行评审

摘要

The incorporation of nanofillers into soy protein materials significantly enhances tensile strength and modulus, and in some cases, contributes to a simultaneous increase in strength and elongation. The decrease in tensile strength that results from plasticization, is therefore, to some extent recovered. Water absorption usually decreased with the incorporation of nanofillers. In addition, the unique properties of some nanofillers such as the electron conductivity of carbon nanotubes and the antiflammability of layered silicates, can be transplanted into soy protein based nanocomposites. The nanocomposite shows great potential for partly solving the two prevailing problems of low strength and water sensitivity, which greatly hamper the development and application of soy protein based plastics. It also contributes to the development of high performance/novel functionality soy protein based materials. Contrary to most cases with soy protein as matrix, one recent study focused on applying soy protein nanoparticle aggregates to modify styrene-butadiene elastomer. The results showed that compact soy protein nanoparticle aggregates interacted more strongly with the polymer matrix and dispersed more uniformly than crude soy protein, and hence produced better modulus retention for the nanocomposites. Without doubt, soy protein based fibres (such as textiles) and adhesives can be further improved in terms of mechanical or adhesion performance by incorporating the proper nanofiller. The single most important factor affecting the high performance of soy protein based nanocomposites is strengthening the interfacial adhesion between the soy protein matrix and nanofillers. Chemical modification on the nanofiller surface is expected to improve the miscibility between filler and soy protein matrix. Furthermore, grafted long polymer chains may penetrate the soy protein matrix to produce a "co-continuous phase" structure, where the interactions and entanglements between grafted polymer chains and soy protein chains contribute to stronger interfacial adhesion.

源语言英语
主期刊名Nanocomposites with Biodegradable Polymers
主期刊副标题Synthesis, Properties, and Future Perspectives
出版商Oxford University Press
9780199581924
ISBN(电子版)9780191728853
ISBN(印刷版)9780199581924
DOI
出版状态已出版 - 28 4月 2011

指纹

探究 'Soy protein-based polymer nanocomposites' 的科研主题。它们共同构成独一无二的指纹。

引用此