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Determination of fluorescence and non-radiative de-excitation rates of excited 3-pentanone at low pressures

机译:低压下激发的3-戊酮的荧光和非辐射去激发率的测定

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摘要

3-Pentanone photophysics measurements and subsequent fluorescence quantum yield (FQY) model development are presented. A heated, flowing optical cell and laser excitation at 248, 266, 277, and 308 nm were utilized, allowing investigation of FQY and absorption cross-section values for 3-pentanone vapor from 298 to 690 K and 10 to 30 mbar. Measurements of FQY were also made for 20 mbar of 3-pentanone at 1.3 bar total pressure in nitrogen from 298 to 530 K and in air from 298 to 487 K. Absolute FQY was determined by calibration to Rayleigh scattering of nitrogen gas. Based on these FQY measurements and fluorescence lifetime data from previous work, the fluorescence rate kf was determined to be 3.70 × 10~5 s~(-1) The current work extends knowledge of the non-radiative rate k_(nr) to vibra-tional energies of 15000 cm~(-1), and the expression for k_(nr) was optimized to include a fit to these new data points. Finally, variation of FQY with 3-pentanone vapor pressure was used to optimize the vibrational relaxation cascade parameter α_(3p). The updated FQY model for 3-pentanone vapor shows agreement within 8% to the current FQY data across the investigated range of temperatures and pressures.
机译:介绍了3-戊酮的光物理测量和随后的荧光量子产率(FQY)模型开发。利用加热,流动的光电池和在248、266、277和308 nm处的激光激发,可以研究298至690 K和10至30 mbar的3-戊酮蒸气的FQY和吸收截面值。在298至530 K的氮气中和298至487 K的空气中,在1.3 bar总压力下还对20 mbar的3-戊酮进行了FQY的测量。通过校准氮气的瑞利散射来确定绝对FQY。根据这些FQY测量值和先前工作的荧光寿命数据,荧光速率kf被确定为3.70×10〜5 s〜(-1)。当前工作将非辐射速率k_(nr)的知识扩展到了振动。能量为15000 cm〜(-1),并且k_(nr)的表达式已优化为包括对这些新数据点的拟合。最后,利用FQY随3-戊酮蒸气压的变化来优化振动松弛级联参数α_(3p)。在研究的温度和压力范围内,更新的3-戊酮蒸气FQY模型显示与当前FQY数据的一致性在8%之内。

著录项

  • 来源
    《Applied physics》 |2012年第3期|p.741-753|共13页
  • 作者

    B.H. Cheung; R.K. Hanson;

  • 作者单位

    High Temperature Gasdynamics Laboratory,Department of Mechanical Engineering, Stanford University,Stanford, CA 94305, USA;

    High Temperature Gasdynamics Laboratory,Department of Mechanical Engineering, Stanford University,Stanford, CA 94305, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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