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Transient Fluorescence Spectroscopy and laser induced fluorescence lifetimes of terbium doped dipicolinic acid.

机译:do掺杂的二吡啶甲酸的瞬态荧光光谱法和激光诱导的荧光寿命。

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摘要

We have investigated the use of deep UV laser induced fluorescence for the sensitive detection and spectroscopic lifetime studies of terbium doped dipicolinic acid (DPA-Tb) and used this to study the optical characteristics of DPA which is a chemical surrounding most bacterial spores. Background absorption spectra, fluorescence spectra, and Excitation Emission Matrix (EEM) spectra were made of the DPA-Tb complex, using both fixed 266 nm wavelength and tunable (220 nm--280 nm) UV laser excitations. Of importance, the fluorescence lifetimes of the four main fluorescence peaks (488 nm, 543 nm, 581 nm, and 618 nm) of the DPA-Tb complex have been measured for the first time to our knowledge. The lifetimes of all the fluorescing lines have been measured as a function of DPA-Tb concentration, solvent pH, and solvent composition, including that for the weakest fluorescing line of DPA-Tb at 618 nm. In addition, a new spectroscopic lifetime measurement technique, which we call "Transient Fluorescence Spectroscopy", was developed. In this technique, a weak, quasi-CW, amplitude modulated UV laser (8.5 kHz) was used to measure the lifetimes of the fluorescence lines, and yields insight into energy transfer and excitation lifetimes within the system. This technique is especially useful when a high power laser is not either available or not suitable. In the latter case, this would be when a high power pulsed deep-UV laser could produce bleaching or destruction of the biological specimen.;In addition, this technique simulated the excitation and fluorescence emission of the DPA-Tb using a 4-level energy model, and solved the dynamic transient rate equations to predict the temporal behavior of the DPA-Tb emitted fluorescence. Excellent agreement between the experiments and the simulation were found. This technique has the potential to provide a more accurate value for the fluorescence lifetime values. In addition, with the use of asymmetric excitation waveforms, the dynamic transient rate equation analysis may allow for detailed studies of selected transfer mechanisms in a wide range of other spectroscopic applications including rare-earth solid-state lasing materials and biological samples.
机译:我们已经研究了深紫外激光诱导的荧光在掺detection二吡啶甲酸(DPA-Tb)的灵敏检测和光谱寿命研究中的用途,并以此研究了DPA的光学特性,DPA是围绕大多数细菌孢子的化学物质。使用固定的266 nm波长和可调谐(220 nm--280 nm)紫外激光激发,由DPA-Tb络合物制成背景吸收光谱,荧光光谱和激发发射矩阵(EEM)光谱。重要的是,据我们所知,首次测量了DPA-Tb络合物的四个主要荧光峰(488 nm,543 nm,581 nm和618 nm)的荧光寿命。已测量所有发荧光线的寿命,该寿命是DPA-Tb浓度,溶剂pH和溶剂组成的函数,包括DPA-Tb最弱荧光线在618 nm处的寿命。另外,开发了一种新的光谱寿命测量技术,我们称之为“瞬态荧光光谱法”。在此技术中,使用弱的准连续波调幅紫外激光(8.5 kHz)测量荧光线的寿命,从而深入了解系统内的能量转移和激发寿命。当高功率激光器不可用或不合适时,此技术特别有用。在后一种情况下,这将是大功率脉冲深紫外激光会产生漂白或破坏生物样本的现象。此外,该技术使用4级能级模拟了DPA-Tb的激发和荧光发射。模型,并解决了动态瞬变速率方程,以预测DPA-Tb发射荧光的时间行为。实验和仿真之间发现了极好的一致性。该技术有可能为荧光寿命值提供更准确的值。此外,通过使用非对称激励波形,动态瞬变速率方程分析可以对包括稀土固态激光材料和生物样品在内的各种其他光谱应用中的选定转移机理进行详细研究。

著录项

  • 作者

    Makoui, Anali.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 290 p.
  • 总页数 290
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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