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The contribution of hydrogen bonding to the photomechanical response of azobenzene-functionalized polyamides

机译:氢键与偶氮官能化聚酰胺的光电力学响应的贡献

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摘要

Photomechanical effects in materials can directly convert light stimulus into mechanical work. The magnitude of the photogenerated work is directly associated with the material stiffness (modulus). Here, we report the synthesis of an azobenzene-functionalized polyamide (azoPA) and demonstrate its room-temperature photomechanical response. The comparatively large photomechanical response of this high stiffness material is enabled by light-induced, azobenzene-assisted dissociation of inter-chain hydrogen bonding within the polymer backbone. The photomechanical response of the azoPA is directly contrasted with an analogous azobenzene-functionalized polyimide (azoPI) to illustrate the influence of intermolecular interactions.
机译:材料的光学力学效果可以直接将光刺激转换成机械工作。 光生成的幅度与材料刚度(模量)直接相关。 在这里,我们报告了偶氮烯官能化聚酰胺(Azopa)的合成,并证明了其室温光学力学反应。 通过光诱导的偶氮苯辅助解离聚合物主链内的链间氢键合的光诱导,偶氮苯辅助解离来实现这种高刚度材料的相对较大的光电动力学响应。 Azopa的光学力学响应与类似偶氮苯官能化的聚酰亚胺(AZOPI)直接对比,以说明分子间相互作用的影响。

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