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Photophysical Properties and Singlet Oxygen Generation Efficiencies of Water-Soluble Fullerene Nanoparticles

机译:水溶性富勒烯纳米粒子的光物理性质和单线态氧产生效率

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摘要

As various fullerene derivatives have been developed, it is necessary to explore their photophysical properties for potential use in photoelectronics and medicine. Here, we address the photophysical properties of newly synthesized water-soluble fullerene-based nanoparticles and polyhydroxylated fullerene as a representative water-soluble fullerene derivative. They show broad emission band arising from a wide-range of excitation energies. It is attributed to the optical transitions from disorder-induced states, which decay in the nanosecond time range. We determine the kinetic properties of the singlet oxygen (1O2) luminescence generated by the fullerene nanoparticles and polyhydroxylated fullerene to consider the potential as photodynamic agents. Triplet state decay of the nanoparticles was longer than 1O2 lifetime in water. Singlet oxygen quantum yield of a series of the fullerene nanoparticles is comparably higher ranging from 0.15 to 0.2 than that of polyhydroxylated fullerene, which is about 0.06.
机译:随着各种富勒烯衍生物的开发,有必要探索它们的光物理性质,以潜在地用于光电子学和医学中。在这里,我们解决了新合成的水溶性富勒烯基纳米颗粒和作为代表性水溶性富勒烯衍生物的多羟基化富勒烯的光物理性质。它们显示出由于激发能量范围广而产生的宽发射带。这归因于来自无序诱发状态的光学跃迁,其在纳秒时间范围内衰减。我们确定了富勒烯纳米颗粒和多羟基化富勒烯产生的单线态氧( 1 O2)发光的动力学特性,以考虑其作为光动力剂的潜力。纳米粒子在水中的三重态衰变比 1 O2寿命更长。一系列富勒烯纳米颗粒的单重态氧量子产率在0.15-0.2范围内比多羟基化富勒烯的约0.06更高。

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