首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Resolving Anomalous Heavy Atom Effects from Discrete Triplet Mediated Photochemistry Events on Single Conjugated Polymer Chains
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Resolving Anomalous Heavy Atom Effects from Discrete Triplet Mediated Photochemistry Events on Single Conjugated Polymer Chains

机译:从离散三联介导的单缀合聚合物链中的离散三联介导的光化学事件解决异常的重原子效应

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Spin-forbidden triplet excited states of conjugated polymers have important ramifications for material performance and stability, yet triplet processes are difficult to understand and control at the bulk material level. We investigate the effect of a heavy heteroatom and chain conformation on triplet-mediated oxygen photochemistry events in poly(3-hexylthiophene) (P3HT) and poly(3-hexylselenophene) (P3HS) systems using high throughput single molecule spectroscopic imaging. Fluorescence intensity transients of both polymers exhibit discrete intermittency behavior (blinking) characteristic of collapsed conformations and efficient energy funneling. Although both systems have similar molecular weights (similar to 30 kDa), P3HS transients show unexpectedly longer average "on" times and larger average intensities that we attribute to shorter-lived triplets and faster ground electronic state recycling than in P3HT counterparts. This lowers the probability of sensitizing reactive oxygen species and residence times in "off" states. We use detailed statistical modeling incorporating a hidden two-state Markov chain with a transient bleach state to simulate irreversible photobleaching. Statistical distributions of "on" and "off" time distributions from simulated fluorescence intensity transients are in excellent agreement with experiment, consistent with lower average triplet occupancies in P3HS. Our findings offer new molecular-level insights of heavy atom effects on triplet occupancies and discrete photochemistry events that are difficult to resolve at the ensemble level because of averaging over all conformations and packing arrangements.
机译:旋转禁止的三态激发缀合物的共轭聚合物具有重要的材料性能和稳定性的重要性,但在散装材料水平上难以理解和控制三重态过程。我们研究了使用高通量单分子光谱成像的聚(3-己基烯烯)(P3HT)(P3HT)和聚(3-己酰基苯丙丁烯)(P3HS)系统中的三重型氧气光化学事件对三重态介导的氧气光化学事件的影响。两种聚合物的荧光强度瞬变表现出折叠构象的离散间行为(闪烁)特性和有效的能量漏斗。尽管两个系统具有类似的分子量(类似于30kDa),但P3HS瞬变显示出意外的较长较长的平均值“ON”时间和更大的平均强度,以至于我们归因于更短的三胞胎和更快的地面电子状态回收而不是P3HT对应物。这降低了在“OFF”状态中敏化反应性氧物种和停留时间的可能性。我们使用具有瞬态漂白状态的隐藏的两个马尔可夫链的详细统计建模,以模拟不可逆的光漂白。 “开启”和“OFF”时间分布从模拟荧光强度瞬变的分布与实验非常一致,与P3HS中的均等均等占用较低的三联占用。我们的研究结果为Triplet占用和离散的光化学事件提供了新的重大原子效果的新分子层面,这些事件难以在集合层面上难以解决,因为对所有构象和包装布置进行平均。

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