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Investigation of the aluminum phthalocyanine nanoparticles colloidal solutions pH-dependent photoluminescence kinetics in pico- and nanosecond time range

机译:研究铝酞菁纳米粒子胶体溶液PH依赖性光致发光动力学在微微和纳秒的时间范围内

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In this study, the fluorescence intensity decay of aluminum phthalocyanine nanoparticles colloidal solutions at different pH was investigated. Hamamatsu Streak-Camera (C10627 - 13 Hamamatsu Photonics) with picosecond temporal resolution (15 ps) was used to carry out the measurements. For excitation we used Hamamatsu Picosecond Light Pulser PLP - 10 with 637 nm wavelength and 65 ps pulse duration. The changes in fluorescence decay kinetics were found during the experiment. The number of fluorescence lifetime components and duration of lifetimes depends on pH. At pH 2 the presence of two fluorescence lifetimes was recorded: the first one was 5 ns, which corresponded to the molecular form in solution, and 1.5 ns, which corresponded to bound state of phthalocyanine molecules. This work is a preparatory step towards a model which describes the interaction of aluminum phthalocyanine nanoparticles with environment in biological tissue.
机译:在该研究中,研究了不同pH下铝酞菁纳米粒子胶体溶液的荧光强度衰减。 Hamamatsu Steak-Camera(C10627 - 13 Hamamatsu Photonics)用于吡秒钟时间分辨率(15 ps)来进行测量。对于激励,我们使用了Hamamatsu PicoSecond光脉冲PLP - 10,具有637 nm波长和65 PS脉冲持续时间。在实验期间发现了荧光衰变动力学的变化。荧光寿命部件的数量和寿命持续时间取决于pH。在pH 2时,记录了两个荧光寿命的存在:第一个是5ns,其对应于溶液中的分子形式,1.5ns,其对应于酞菁分子的结合状态。这项工作是朝向一种模型的准备步骤,该模型描述了铝酞菁纳米粒子与生物组织环境中的环境的相互作用。

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