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Gases sorption and oxygen photodesorption on/from solid-state fullerene and fullerene-like adsorbents

机译:来自固态富勒烯和富勒烯样吸附剂的气体吸附和氧气光度

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The results of study of sorption properties of fullerene and fullerene-like nanostructures with respect to molecular oxygen, nitrogen and helium are given. The influence of experimental conditions (time, gas pressure, temperature and structure of sample) on these properties is investigated. At an irradiation of fullerenes and others fullerene-like adsorbents by light of a laser or a pulse lamp an output in a gas phase of oxygen, adsorbed by these samples, was observed. At interaction photoexited fullerene and adsorbed oxygen there is a transfer of excitation to oxygen and the essential part of oxygen in a gas phase was in the exited singlet states. These effects are confirmed by experimental observation of luminescence pulses on the wavelengths 0.762 and 1.268 microns with specific pulse duration. The processes of formation and quenching of singlet oxygen at pulse photoexcitation and photodesorption are considered. The fullerene and fullerene-like coatings on glass, ceramic, and porous metal surfaces were investigated. Spectral and temporary distributions of singlet oxygen luminescence for various adsorbents surfaces were studied. The influence of adsorbents surfaces cooling of on singlet oxygen amount obtained in a gas phase and on luminescence intensity has been investigated. On the base of investigations of physical principles of the singlet oxygen generation during interaction of the oxygen molecules with the solid-state photoexcited fullerenes and carbon nanostructures was proposed and realized the prototype of the singlet oxygen generator for the fullerene-oxygen-iodine laser, working in the pulsed mode.
机译:给出了富勒烯和富勒烯样纳米结构相对于分子氧,氮和氦的吸附性能的研究结果。研究了实验条件(时间,气体压力,样品的温度和结构)对这些性质的影响。在富勒烯和其他富勒烯样吸附剂在富勒烯和其他富勒烯样吸附剂在富含激光器或脉冲灯的情况下,观察到通过这些样品吸附的气相中的气相中的输出。在相互作用中,光相连的富勒烯和吸附的氧气会导致激发到氧气,气相中的氧的主要部分在出生的单线态中。这些效果通过实验观察发光脉冲对波长0.762和1.268微米具有特定脉冲持续时间的实验观察来确认。考虑了在脉冲光透镜和光电滤波处的单次氧的形成和淬火的过程。研究了玻璃,陶瓷和多孔金属表面上的富勒烯和富勒烯状涂层。研究了各种吸附剂表面的单线氧发光的光谱和临时分布。研究了吸附剂表面冷却在气相中获得的单线氧量和发光强度的影响。提出了用固态光渗透富勒烯和碳纳米结构的氧分子相互作用期间单次氧气产生的物理原理的研究基础,并实现了富勒烯 - 氧碘激光器的单线氧发电机的原型,工作在脉冲模式下。

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