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Dye/zeolite ensembles for optical se...
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Purdue University.
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Dye/zeolite ensembles for optical sensing applications: Vapor detection in nanopores.
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Dye/zeolite ensembles for optical sensing applications: Vapor detection in nanopores./
Author:
Meinershagen, Julia Louise.
Description:
194 p.
Notes:
Major Professor: Thomas Bein.
Contained By:
Dissertation Abstracts International62-11B.
Subject:
Chemistry, Inorganic. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3033134
ISBN:
0493461264
Dye/zeolite ensembles for optical sensing applications: Vapor detection in nanopores.
Meinershagen, Julia Louise.
Dye/zeolite ensembles for optical sensing applications: Vapor detection in nanopores.
- 194 p.
Major Professor: Thomas Bein.
Thesis (Ph.D.)--Purdue University, 2000.
The aim of this work is to combine the shape selectivity of zeolites with the chemical sensitivity of solvatochromic dyes, which has been explored for the application of size selective vapor sensing. Solvatochromic dyes are extremely sensitive to their surrounding environment and display large wavelength shifts in visible and fluorescence spectra reflecting changes in polarity.
ISBN: 0493461264Subjects--Topical Terms:
517253
Chemistry, Inorganic.
Dye/zeolite ensembles for optical sensing applications: Vapor detection in nanopores.
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Major Professor: Thomas Bein.
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Source: Dissertation Abstracts International, Volume: 62-11, Section: B, page: 5114.
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Thesis (Ph.D.)--Purdue University, 2000.
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The aim of this work is to combine the shape selectivity of zeolites with the chemical sensitivity of solvatochromic dyes, which has been explored for the application of size selective vapor sensing. Solvatochromic dyes are extremely sensitive to their surrounding environment and display large wavelength shifts in visible and fluorescence spectra reflecting changes in polarity.
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The solvatochromic dyes Nile Red, Copper(II)(tetramethylethylenediamine) (acetylacetonate)<super>+</super> and Coumarin 153, have been included into various siliceous and conventional aluminosilicate zeolites. Approaches such as inclusion synthesis, ion exchange as well as direct adsorption into zeolite hosts have been explored for dye encapsulation. Characterization methods included IR, visible diffuse reflectance and fluorescence spectroscopy, mass spectrometry and X-ray diffraction. Dramatic, reversible shifts in the absorbance and fluorescence spectra in the presence of various analytes, in bulk zeolite powders, as well as thin film samples have been demonstrated. By restricting chromophores into zeolite hosts, specificity towards various molecules, as well as size selectivity has been demonstrated.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3033134
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