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Extraordinarily large swelling energy of iodine-treated poly(vinyl alcohol) demonstrated by jump of a film

机译:膜跳变表明碘处理的聚乙烯醇具有极高的溶胀能

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摘要

Organic material characteristics of volume change and stress generation have attracted the attention of many researchers aiming to develop chemomechanical systems such as artificial muscles and polymer engines having the advantages of high energy density and silent operation. Although polymer gels offer a relatively large actuator stroke, their mechanical properties are relatively poor and the working temperature is relatively low, often limited by the evaporation of liquid if contained. We have developed an iodine-treated poly(vinyl alcohol) having extraordinarily large vapor-induced deswelling stress reaching 59 MPa, which is one to two orders of magnitude greater than those of ordinary polymer gels. Furthermore, this material has extremely large volumetric and gravimetric energy densities reaching 1.3 × 106 J m−3 and 9.6 × 102 J kg−1, respectively, and an elastic modulus of a few GPa and is heat-resistant to at least 200 °C. The high performance of this material can be demonstrated by a jump of a film. © 2014 The Authors. Journal of Polymer Science Part B: Polymer Physics published by Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. >2014, 52, 1357–1365
机译:体积变化和应力产生的有机材料特性吸引了许多研究人员的注意力,这些研究人员致力于开发具有高能量密度和静音运行优势的化学机械系统,例如人造肌肉和聚合物发动机。尽管聚合物凝胶提供相对较大的致动器冲程,但是它们的机械性能相对较差并且工作温度相对较低,如果包含的话,通常受液体蒸发的限制。我们已经开发出一种经过碘处理的聚乙烯醇,其蒸气诱导的溶胀应力非常大,达到59 MPa,比普通的聚合物凝胶大一到两个数量级。此外,这种材料的体积和重量能量密度非常大,分别达到1.3×10 6 J m -3 和9.6×10 2 J kg < sup> -1 分别具有几GPa的弹性模量和至少200°C的耐热性。这种材料的高性能可以通过薄膜的跳跃来证明。 ©2014作者。高分子科学杂志B部分:高分子物理,由Wiley Periodicals,Inc. J. Polym出版。科学,B部分:Polym。物理> 2014 ,52,1357–1365

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