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Derivative fluorimetry analysis of new cluster structures formed by ethanol and water molecules

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【作者】 吴斌刘莹韩彩芹骆晓森陆建倪晓武

【Author】 Bin Wu 1,Ying Liu 2,Caiqin Han 1,2,Xiaosen Luo 1Jian Lu 1,and Xiaowu Ni1 1School of Science,Nanjing University of Science and Technology,Nanjing 210094 2College of Physics and Electronic Engineering,Xuzhou Normal University,Xuzhou 221116

【机构】 School of Science, Nanjing University of Science and TechnologyCollege of Physics and Electronic Engineering, Xuzhou Normal University

【摘要】 The ultraviolet (UV) light excited fluorescence spectra of ethanol-water mixture with different concentra-tions are investigated by derivative fluorimetry. It is found that there are 8 types of luminescent cluster molecules,formed by ethanol and water molecules in different ways,existing in the solution. The peak wavelengths of all these clusters’ fluorescence spectra are measured and their contents are obtained by measuring the peak values in the second derivative fluorescence spectra. The spectra corresponding to the 8 types of clusters are obtained by Gaussian decomposition. It is found that two kinds of cluster molecules whose peak wavelengths are 330 and 345 nm have an optimal excitation wavelength located at (236±3) nm. This research contributes to the study of ethanol-water cluster structures and their physical and chemical characteristics.

【Abstract】 The ultraviolet (UV) light excited fluorescence spectra of ethanol-water mixture with different concentra-tions are investigated by derivative fluorimetry. It is found that there are 8 types of luminescent cluster molecules,formed by ethanol and water molecules in different ways,existing in the solution. The peak wavelengths of all these clusters’ fluorescence spectra are measured and their contents are obtained by measuring the peak values in the second derivative fluorescence spectra. The spectra corresponding to the 8 types of clusters are obtained by Gaussian decomposition. It is found that two kinds of cluster molecules whose peak wavelengths are 330 and 345 nm have an optimal excitation wavelength located at (236±3) nm. This research contributes to the study of ethanol-water cluster structures and their physical and chemical characteristics.

【基金】 supported by the Natural Science Foundation of Jiangsu Province under Grant No. BK2007204
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2009年02期
  • 【分类号】O433
  • 【被引频次】10
  • 【下载频次】51
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