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Nanoindentation study of light-induced softening of supramoiecular and covalently functionalized azo polymers

机译:光诱导超分子和共价官能化偶氮聚合物软化的纳米压痕研究

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摘要

Nanoindentation studies on thin films of the widely used azo poly-mer PDR1A and a supramoiecular polymer-azobenzene complex p4VP(DY7)_(0.5) demonstrate significant light-induced softening upon visible-light irradiation due to trans-cis-trans photoisomerization of the azobenzene units. More specifically, the strain-rate sensitivities of PDR1A and p4VP(DY7)_(0.5) upon 532 nm irradiation increase by 80% and 120%, respectively. These results imply a photosoftening contribution to the mechanisms of light-induced surface patterning of azo polymers and the photomechanical effect. The finding that under the experimental conditions used photosoftening is more significant in the supramoiecular complex than in the covalently functionalized polymer highlights the potential of noncovalent functionalization strategies in designing materials with efficient photomechanical response, and nanoindentation provides a powerful technique to quantify the connection between the photoinduced changes in mechanical properties and photoinduced macroscopic movement of azo polymer films.
机译:对广泛使用的偶氮聚合物PDR1A和超分子聚合物-偶氮苯络合物p4VP(DY7)_(0.5)的薄膜进行的纳米压痕研究表明,由于可见光的反式-顺式-反式光致异构化,光在可见光照射下显着软化。偶氮苯单元。更具体地,在532nm照射下,PDR1A和p4VP(DY7)_(0.5)的应变率敏感性分别增加了80%和120%。这些结果暗示光软化对偶氮聚合物的光诱导的表面图案化机理和光机械作用做出了贡献。发现在实验条件下使用的光软化作用在超分子复合物中比在共价官能化的聚合物中更为重要,这一发现凸显了非共价官能化策略在设计具有有效光机械响应的材料中的潜力,纳米压痕技术提供了一种强有力的技术来量化光致反应之间的联系机械性能的变化和偶氮聚合物薄膜的光致宏观运动。

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