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Large enhancements in optoelectronic efficiencies of nano-plastically stressed conjugated polymer strands

机译:纳米塑性应力共轭聚合物链的光电效率大大提高

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摘要

The photoluminescence (PL) of well dispersed molecules of a conjugated polymer, poly[2-methoxy-5-((2′-ethylhexyl)oxy)-1,4-phenylene-vinylene] (MEH-PPV), in an optically inert matrix manifested dramatic increases when the individual molecular strands were fully stretched. The PL increase rose with stretching and may reach several folds when the mechanical strain of the matrix polymer went beyond 550%. Strong polarization effects indicate that stretching individual polymer chains was responsible for the PL enhancement. This effect was attributed to suppression of electron-phonon interactions in the stress-rigidified polymer chain segments and may be useful for efficiency-enhanced polymer-based optoelectronic devices.
机译:共轭聚合物,聚[2-甲氧基-5-((2'-乙基己基)氧基)-1,4-亚苯基-亚乙烯基](MEH-PPV)中分散良好的分子的光致发光(PL)当单个分子链被完全拉伸时,基质显示出急剧增加。 PL的增加随拉伸而增加,当基质聚合物的机械应变超过550%时,PL的增加可能达到几倍。强烈的极化效应表明,拉伸单个聚合物链是PL增强的原因。该效应归因于应力应力化的聚合物链段中电子-声子相互作用的抑制,对于提高效率的基于聚合物的光电器件可能有用。

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