首页> 外文期刊>Journal of chemical theory and computation: JCTC >Curious Case of 2-Selenouracil: Efficient Population of Triplet States and Yet Photostable
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Curious Case of 2-Selenouracil: Efficient Population of Triplet States and Yet Photostable

机译:2-硒尿嘧啶的奇妙情况:高态度群体的高效群体,但相光稳定

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Excited-state MS-CASPT2 and ADC(2) quantum chemical calculations and nonadiabatic dynamics simulations show that 2-selenouracil is able to both efficiently populate and depopulate reactive triplet states in an ultrashort time scale. Thus, the heavier homologue of 2-thiouracil unites the ultrafast, high-yield intersystem crossing of 2-thiouracil with the short excited-state lifetime and photostability of the parent nucleobase uracil two properties that have been traditionally thought to be diametrically opposed. Remarkably, while the S-2 -> S-1 -> T-2 -> T-1 deactivation dynamics of 2-selenouracil is analogous to that of 2-thiouracil, the calculations show that the triplet lifetime of 2-selenouracil should decrease by up to 3 orders of magnitude in comparison to that 2-thiouracil, possibly down to the few-picosecond time scale. The main reasons for this decrease are the lack of a second T-1 minimum, the enhanced spin orbit coupling, and the reduction of the energy barrier to access the T-1/S-0 crossing-in particular in aqueous solution compared to 2-thiouracil. Such unusual photophysical properties, together with its significant red-shifted absorption spectrum, could make 2-selenouracil a useful specialized photosensitizer for photodynamical therapy.
机译:兴奋状态MS-CASPT2和ADC(2)量子化学计算和非等级动力学模拟表明,2-SELENORACIL能够在超短时间尺度中有效地填充和划分活性三重态状态。因此,2-Thiouracil的较重同源物与2-硫胺的超快,高屈服的间隙交叉,其具有传统上被认为是径向相对的母体核酶尿嘧啶的短兴奋状态的寿命和光稳定性。值得注意的是,虽然2-selenouracil的S-2 - > S-1 - > T-2 - > T-1去激活动态类似于2-Thiouracil的动态,但计算结果表明,2-Selenouracil的三联寿命应该减少与此2-Thiouracil相比,最多3个数量级,可能是缩小到几个皮秒的时间尺度。这种降低的主要原因是缺乏第二T-1最小,增强的旋转轨道耦合,以及在与2相比,尤其在水溶液中进入T-1 / S-0交叉的能量屏障的减少-thiouracil。这种不寻常的光学性质与其显着的红移吸收光谱一起,可以使2-Selenouracil成为光动力学治疗的有用专用的光敏剂。

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