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A fullerene-distyrylbenzene photosensitizer for two-photon promoted singlet oxygen production

机译:用于两光子的富勒烯-二苯乙烯基苯光敏剂可促进单线态氧的产生

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摘要

Novel compounds endowed with a high two-photon absorption (TPA) cross-section and a high singlet oxygen quantum yield, are sought after for their possible application in anti-cancer therapies. In this paper we present a prototype macromolecule bearing a distyrylbenzene dimer as TPA unit and a [60]fullerene moiety for singlet oxygen generation. Linear absorption and emission spectra are measured, to help understanding the interactions between the single molecular units. The TPA absorption properties of the distyrylbenzene alone as well as bound to the methanofullerene unit are recorded with the TPA-induced fluorescence technique. An appreciable enhancement of the TPA cross-section was observed in the molecular conjugate.Singlet oxygen generation has been detected exciting the sample both in the Vis and NIR through one- and two-photon absorption processes, respectively. Although functionalization decreases the overall singlet oxygen quantum yield of fullerene, the presence of the distyrylbenzene antenna allows two-photon generation of singlet oxygen through an energy transfer process.
机译:寻求具有高双光子吸收(TPA)截面和高单线态氧量子产率的新型化合物,因为它们可能在抗癌治疗中得到应用。在本文中,我们提出了一个原型大分子,带有一个二苯乙烯基苯二聚体作为TPA单元和一个[60]富勒烯部分,用于产生单线态氧。测量线性吸收光谱和发射光谱,以帮助理解单个分子单元之间的相互作用。用TPA诱导的荧光技术记录了二苯乙烯基苯单独的以及与甲基富勒烯单元结合的TPA吸收特性。在分子共轭物中观察到TPA横截面明显增加。通过单光子吸收和双光子吸收过程,分别在Vis和NIR中检测到了激发样品的单氧生成。尽管官能化降低了富勒烯的整体单线态氧量子产率,但是二苯乙烯基苯天线的存在允许通过能量转移过程产生两个光子的单线态氧。

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