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Nanoindentation studies to separate thermal and optical effects in photo-softening of azo polymers

机译:纳米压痕研究可分离偶氮聚合物光软化过程中的热效应和光学效应

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Mechanical characterization of an azobenzene dye-containing polymer (p4VP(DY7)(0.50)) by nanoindentation shows a significant photo-softening effect under visible irradiation at 532 nm. Both strong rate-dependent plastic softening, as well as a rate-independent elastic modulus decrease are observed. Indentation at elevated, sub-glass transition temperatures results in only a rate-in dependent decrease in hardness however. These findings indicate, from a mechanics standpoint, for the first time a distinct mechanism for the photomechanical softening in azo-materials that is different from a simple thermal effect. The main hallmark of the photosoftening effect was significant viscoplastic flow with strong rate dependence. The presence of the viscoplastic softening in azo-polymers was accounted for in analysis of nanoindentation data to obtain an accurate elastic modulus unaffected by the presence of creep in the unloading curves. These results provide considerable insight into the long-observed and long-debated mechanism of all-optical surface patterning below T-g.
机译:通过纳米压痕对含偶氮苯染料的聚合物(p4VP(DY7)(0.50))进行机械表征,表明在532 nm的可见光照射下具有显着的光软化效果。观察到强烈的速率依赖性塑性软化以及速率无关的弹性模量降低。但是,在较高的亚玻璃化转变温度下压痕只会导致硬度随速率的下降。从力学的观点来看,这些发现首次表明了一种不同于简单热效应的独特的偶氮材料光机械软化机理。光软化作用的主要标志是具有强烈的速率依赖性的明显的粘塑性流动。在纳米压痕数据的分析中考虑了偶氮聚合物中粘塑性软化的存在,以获得不受卸载曲线中蠕变的存在影响的准确的弹性模量。这些结果为T-g以下的全光学表面构图的长期观察和长期辩论机制提供了可观的见解。

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