Synthesis of Rhodamine-based Chemosensor and Determination of Spectral Properties

A rhodamine-based fluorescent chemosensor (Rh6G-2HC) was synthesized easily by a one-step condensation reaction. The structure was characterized using NMR, MS and EA spectroscopies. As soon as Cu 2+ was added into the chemosensor solution, a color change from colorless to pink color was observed, an...

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Published inMolecular Crystals and Liquid Crystals Vol. 604; no. 1; pp. 193 - 201
Main Authors Lee, Sang-Oh, An, Kyoung-Lyong, Shin, Seung-Rim, Jun, Kun, Lee, Jae-Young, Hwang, Ji-Yong, Son, Younga
Format Journal Article
LanguageEnglish
Published Philadelphia Taylor & Francis 22.11.2014
Taylor & Francis Ltd
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Abstract A rhodamine-based fluorescent chemosensor (Rh6G-2HC) was synthesized easily by a one-step condensation reaction. The structure was characterized using NMR, MS and EA spectroscopies. As soon as Cu 2+ was added into the chemosensor solution, a color change from colorless to pink color was observed, and a considerable change in the absorption and fluorescence spectra. However, no spectral changes were indicated for other heavy metals such as Ag + , Zn 2+ , Cd 2+ , and Co 2+. In order to provide a more detailed metal sensing performance, the optical and structural properties for the Cu 2+ sensing effect were investigated using UV-Vis, fluorescence and H-NMR spectroscopies.
AbstractList A rhodamine-based fluorescent chemosensor (Rh6G-2HC) was synthesized easily by a one-step condensation reaction. The structure was characterized using NMR, MS and EA spectroscopies. As soon as Cu super(2+) was added into the chemosensor solution, a color change from colorless to pink color was observed, and a considerable change in the absorption and fluorescence spectra. However, no spectral changes were indicated for other heavy metals such as Ag super(+), Zn super(2+), Cd super(2+), and Co super(2+.) In order to provide a more detailed metal sensing performance, the optical and structural properties for the Cu super(2+) sensing effect were investigated using UV-Vis, fluorescence and H-NMR spectroscopies.
A rhodamine-based fluorescent chemosensor (Rh6G-2HC) was synthesized easily by a one-step condensation reaction. The structure was characterized using NMR, MS and EA spectroscopies. As soon as ... was added into the chemosensor solution, a color change from colorless to pink color was observed, and a considerable change in the absorption and fluorescence spectra. However, no spectral changes were indicated for other heavy metals such as Ag+, ..., ..., and ... In order to provide a more detailed metal sensing performance, the optical and structural properties for the ... sensing effect were investigated using UV-Vis, fluorescence and H-NMR spectroscopies. (ProQuest: ... denotes formulae/symbols omitted.)
A rhodamine-based fluorescent chemosensor (Rh6G-2HC) was synthesized easily by a one-step condensation reaction. The structure was characterized using NMR, MS and EA spectroscopies. As soon as Cu 2+ was added into the chemosensor solution, a color change from colorless to pink color was observed, and a considerable change in the absorption and fluorescence spectra. However, no spectral changes were indicated for other heavy metals such as Ag + , Zn 2+ , Cd 2+ , and Co 2+. In order to provide a more detailed metal sensing performance, the optical and structural properties for the Cu 2+ sensing effect were investigated using UV-Vis, fluorescence and H-NMR spectroscopies.
Author An, Kyoung-Lyong
Shin, Seung-Rim
Lee, Jae-Young
Son, Younga
Lee, Sang-Oh
Jun, Kun
Hwang, Ji-Yong
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Snippet A rhodamine-based fluorescent chemosensor (Rh6G-2HC) was synthesized easily by a one-step condensation reaction. The structure was characterized using NMR, MS...
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SubjectTerms Bing site
Chemical reactions
Chemical synthesis
Chemoreceptors
chemosensor
Color
Condensation
Crystals
Detection
energy transfer
Fluorescence
Heavy metals
optical determination
Optical properties
Rhodamine
Spectra
Spectroscopy
Spectrum analysis
Title Synthesis of Rhodamine-based Chemosensor and Determination of Spectral Properties
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