A variety of lipophilic amines incorporated in liquid membranes exhibit potentiometric responses to neutral phenols
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概要
- 論文の詳細を見る
A variety of lipophilic amines incorporated in PVC matrix liquid membranes exhibited anionic potentiometric responses to phenolic compounds at the pH conditions under which the phenols exist mainly or exclusively in their undissociated, neutral forms. The examined lipophilic amines include a macrocyclic pentaamine, tri(decyl)amine, 4,7-dephenyl-1,10-phenanthroline (bathophenanthroline), 4-octadecylpyridine, and sapphyrin. The potentiometric selectivities of the membranes based on lipophilic aliphatic amines (B) reflected the acidity (hydrogen bond donor activity) and lipophilicity (extractability) of the phenols (ArOH), similarly as membranes based on lipophilic quaternary ammonium salts (Q^+X^-). The anionic responses were explained on the basis of a decrease in the charge separation of protonated amines (BH^+) and their counteranions (X^-) across the membrane interface. Possible processes leading to a decrease in the charge separation between BH^+ and X^- are (i) complexation between ArOH and BH^+X^-, followed by proton dissociation and ejection of HX into the aqueous phase, as well as (ii) complexation between ArOH and B. The membrane based on sapphyrin showed a high potentiometric selectivity to catechol, possibly due to geometrical discrimination of the ortho dihydroxy structure of catechol by the nitrogen(s) on the rigid macrocyclic structure of sapphyrin.
- 日本分析化学会の論文
- 1998-02-10
著者
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Ito Takashi
Department Of Physics University Of Tokyo
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梅澤 喜夫
Univ. Tokyo Tokyo Jpn
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UMEZAWA Yoshio
Department of Chemistry, School of Science, The University of Tokyo
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Umezawa Y
Department Of Chemistry School Of Science The University Of Tokyo
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KIMURA EIICHI
Department of Internal Medicine. Nippon Medical School
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Umezawa Yoshio
Department Of Chemistry Faculty Of Sciences The Tokyo University
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ODASHIMA Kazunori
Graduate School of Pharmaceutical Sciences, Nagoya City University
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LIN Xiao
Division of Environmental Conservation, Graduate School of Environmental Science, Hokkaido Universit
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UMEZAWA Kayoko
Department of Chemistry, Faculty of Science, Ochanomizu University
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SESSLER Jonathan
Department of Chemistry and Biochemistry, University of Texas at Austin
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RADECKA Hanna
Department of Chemistry, Faculty of Science, Hokkaido University
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KIMURA Tatsuji
Department of Chemistry, Faculty of Science, Hokkaido University
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YASHIRO Akiko
Department of Chemistry, Faculty of Science, Hokkaido University
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KATAOKA Masamitsu
Department of Chemistry, Faculty of Science, Hokkaido University
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小田嶋 和徳
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Ito Takashi
Department Of Chemistry School Of Science The University Of Tokyo
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Lin Xiao
Division Of Environmental Conservation Graduate School Of Environmental Science Hokkaido University
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Sessler Jonathan
Department Of Chemistry And Biochemistry University Of Texas At Austin
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Yashiro Akiko
Department Of Chemistry Faculty Of Science Hokkaido University
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Radecka H
Polish Acad. Sci. Olsztyn Pol
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Kimura Tatsuji
Department Of Chemistry Faculty Of Science Hokkaido University
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Umezawa Kayoko
Department Of Chemistry Faculty Of Science Ochanomizu University
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Ito T
Department Of Chemical Engineering Graduate School Of Engineering Nagoya University
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Kimura Eiichi
Department Of Critical Care Med Nippon Medical School
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Odashima Kazunori
Graduate School Of Pharmaceutical Sciences Nagoya City University
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Kimura Eiichi
Department Of Medicinal Chemistry School Of Medicine Hiroshima University
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Kimura Eiichi
Department Of Bioengineering Tokyo Institute Of Technology
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Kataoka Masamitsu
Department Of Chemistry Faculty Of Science Hokkaido University
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Kimura Eiichi
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Ito Takashi
Department of Chemical Engineering, Graduate School of Engineering, Nagoya University
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ITO Takashi
Department of Advanced Materials Chemistry, Graduate School of Engineering, Yokohama National University
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