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Photochromic Spirooxazines Functionalized with Oligomers: Investigation of Core-Oligomer Interactions and Photomerocyanine Isomer Interconversion Using NMR Spectroscopy and DFT

机译:低聚物功能化的光致变色螺恶嗪:使用核磁共振波谱法和DFT研究核-低聚物相互作用和光花青素异构体相互转化

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Photochromic spirooxazines functionalized with poly(ethylene glycol) (PEG) and poly(dimethylsiloxane) (PDMS) oligomers were monitored using NMR spectroscopy at temperatures between 193 and 233 K before and after in situ exposure to UV irradiation. NOESY and ROESY experiments reveal the TTC (trans-s-trans-cis) isomer to be the dominant merocyanine isomer formed on photolysis, with some CTC (cis-s-trans-cis) isomer also present. Significant ROE cross peaks were observed between the 'bulk' of the oligomeric units and protons across the entire photochromic core of the molecule, the intensity of these cross peaks suggesting that the interaction of the oligomer side chain and core of the molecule is significantly enhanced by the permanent attachment, especially with the PDMS side chain. The 2D NMR spectra indicate that there is exchange between the TTC and CTC isomers even at 193 K. This isomerization of the parent spirooxazine compounds, lacking the oligomeric side chains, was found to be acid-catalyzed, and DFT calculations support the strong possibility that it is the protonated merocyanine form that undergoes the facile isomerization process. Interconversion of the different merocyanine isomers is suggested to be fast on the NMR time scale under many experimental conditions, precluding the observation of different isomers using NMR spectroscopy at room temperature.
机译:在原位暴露于紫外线照射之前和之后,使用NMR光谱仪在193至233 K之间的温度下,对用聚(乙二醇)(PEG)和聚(二甲基硅氧烷)(PDMS)低聚物官能化的光致变色螺恶嗪进行监测。 NOESY和ROESY实验表明,TTC(反式-反式-顺式)异构体是光解过程中形成的主要花菁异构体,同时还存在一些CTC(顺式-s-反式顺式)异构体。在分子的整个光致变色核心的低聚单元和质子之间发现了显着的ROE交叉峰,这些交叉峰的强度表明,寡聚体侧链与分子核心的相互作用显着增强了永久连接,尤其是与PDMS侧链连接时。 2D NMR光谱表明,即使在193 K时,TTC和CTC异构体之间也存在交换。缺少低聚侧链的母体螺恶嗪化合物的这种异构化被发现是酸催化的,DFT计算支持以下可能性:质子化的花菁形式经历了容易的异构化过程。建议在许多实验条件下,不同的花菁异构体在NMR时间尺度上的相互转化速度快,这排除了在室温下使用NMR光谱法观察不同异构体的可能性。

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