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Unusual infrared absorption increases in photo-degraded organic films

机译:不寻常的红外吸收增加photo-degraded有机电影

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Degradation is among the most pressing problems facing organic materials, occurring through ingress of moisture and oxygen, and light exposure. We determine the nanoscale pathways underlying degradation by light-soaking organic films in an environmental chamber, and performing infrared spectroscopy, to identify atomic bonding changes. We utilize as a prototype the low band gap PTB7-PCBM blend. Films light-soaked in the presence of oxygen show unusual increased absorption at 1727 cm(-1) attributable to increased C=O modes, and a broad increase at 3240 cm(-1) attributable to hydroxyl (O-H) groups bonded within the organic matrix. Films exposed to oxygen in the dark, or light-soaked in an inert atmosphere, do not exhibit significant absorption changes, suggesting simultaneous exposure of oxygen and light that creates singlet excited oxygen is the detrimental factor. Our ab initio electronic structure simulations interpret these by oxidation at the a-C site of the alkyl chains in PTB7, with an irreversible rupture of the alkyl chain and formation of new C=O and C-O-H conformations at the alpha-C. Infrared spectroscopy coupled with ab initio simulation can provide a powerful tool for quantifying photo-structural atomic bonding changes. Understanding nanoscale light-induced structural changes will open avenues to designing more stable organic materials for organic electronics.
机译:退化是最紧迫的问题之一面对有机材料,通过发生水分和氧气进入,光曝光。底层light-soaking降解有机电影在一个环境室,和执行红外光谱法,确定原子成键的变化。差距PTB7-PCBM混合。存在的氧气显示异常增加(1)由于吸收1727厘米增加了C = O模式,广泛增加3240厘米(1)由于羟基(地)组在有机基体保税。氧气在黑暗中,或在一个light-soaked惰性气氛,不要表现出显著的吸收变化,表明同步曝光的光和氧气产生单线态兴奋的氧气是不利因素。在卷首电子结构模拟解释这些由氧化烷基的a - c网站在PTB7链,一种不可逆转的破裂烷基链,形成新的C = O和在alpha-C C-O-H构象。光谱学加上从头开始模拟可以提供一个强大的工具,量化photo-structural原子成键的变化。理解纳米光致结构将开放渠道设计更多变化稳定的有机电子的有机材料。

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