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Correlation between molecular structure and self-healing in aseries of Anthraquinone derivatives doped in PMMA polymer

机译:PMMA聚合物中掺杂的一系列蒽醌衍生物的分子结构与自愈之间的相关性

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We observe that many different derivatives of anthraquinone chromophores doped in PMMA self heal after undergoing photodegradation. We are interested to know the mechanisms that are responsible for photodegradation and photorecovery, which are not yet fully understood. We used fluorescence and absorption spectroscopy as a probe of the photodegradation and recovery process while the temperature dependence is used to determine the energies of the species involved. We hypothesize that the host polymer mediates the formation of a quasi-stable state. In this scenario, once photo - damaged by intense pump laser, the molecules non radiatively decay into a tautomer state by intra molecule proton transfer, which subsequently leads to the formation of a damaged species - leading to decay of the fluorescence intensity. This hypothesis is consistent with our observation. The temperature dependent fluorescence decay and recovery studies give an insight about the different energy levels participating in optical excitation, decay and recovery. Comparing the experimental parameters such as decay and recovery rates of the fluorescence signal associated with the evolution of peaks in the fluorescence and absorbance spectrum helps us understand correlations between the efficiency of the recovery process and the structures of the dye molecules. Based on the temperature and the time-dependent observations of fluorescence and absorption, we validate qualitatively a new theoretical model which qualitatively takes into account the observed behavior and sheds light on the underlying mechanism. Preliminary measurements show good agreement with the theoretical model. More careful experiments and calculations are in process for further validation of the model.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们观察到,蒽醌生色团的许多不同衍生物在光降解后掺杂在PMMA中能自愈。我们有兴趣了解导致光降解和光恢复的机制,但尚未完全了解。我们使用荧光和吸收光谱作为光降解和恢复过程的探针,而温度依赖性则用于确定所涉及物质的能量。我们假设主体聚合物介导了准稳态的形成。在这种情况下,一旦照片被强力泵浦激光损坏,分子通过分子内质子转移以非辐射方式衰减为互变异构体状态,随后导致受损物质的形成,从而导致荧光强度衰减。这个假设与我们的观察一致。温度相关的荧光衰减和恢复研究提供了有关参与光激发,衰减和恢复的不同能级的见解。比较实验参数,例如与荧光和吸收光谱中峰的演变相关的荧光信号的衰减和恢复速率,有助于我们了解恢复过程的效率与染料分子结构之间的相关性。基于温度以及荧光和吸收随时间变化的观察结果,我们定性地验证了一个新的理论模型,该模型定性地考虑了观察到的行为并阐明了潜在的机理。初步测量结果与理论模型吻合良好。为了进行模型的进一步验证,正在进行更仔细的实验​​和计算。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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