Anion recognition by a novel Fipronil-based receptor: efficient deprotonation or stable intermolecular hydrogen bonding

Strong electron-deficient heterocycles of acetyl Fipronil ( F3) was designed and synthesized, its ability for anion recognition was investigated by UV and NMR analyses. This novel Fipronil-based receptor F3 shows strong binding affinity with acetate (⩾10 7 M −1), phosphate or fluoride ion through ef...

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Published inTetrahedron letters Vol. 49; no. 6; pp. 1087 - 1090
Main Authors Liu, Chuanxiang, Qian, Xuhong, Wang, Jiaobing, Li, Zhong
Format Journal Article
LanguageEnglish
Published OXFORD Elsevier Ltd 04.02.2008
Elsevier
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ISSN0040-4039
1873-3581
DOI10.1016/j.tetlet.2007.10.155

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Abstract Strong electron-deficient heterocycles of acetyl Fipronil ( F3) was designed and synthesized, its ability for anion recognition was investigated by UV and NMR analyses. This novel Fipronil-based receptor F3 shows strong binding affinity with acetate (⩾10 7 M −1), phosphate or fluoride ion through efficient deprotonation. In addition, its interaction with chloride anion or other weak base anions through stable intermolecular H-bonding was also reported.
AbstractList Strong electron-deficient heterocycles of acetyl Fipronil ( F3) was designed and synthesized, its ability for anion recognition was investigated by UV and NMR analyses. This novel Fipronil-based receptor F3 shows strong binding affinity with acetate (⩾10 7 M −1), phosphate or fluoride ion through efficient deprotonation. In addition, its interaction with chloride anion or other weak base anions through stable intermolecular H-bonding was also reported.
Strong electron-deficient heterocycles of acetyl Fipronil (F3) was designed and synthesized, its ability for anion recognition was investigated by UV and NMR analyses. This novel Fipronil-based receptor F3 shows strong binding affinity with acetate ( >= 10(7) M-1), phosphate or fluoride ion through efficient deprotonation. In addition, its interaction with chloride anion or other weak base anions through stable intermolecular H-bonding was also reported. (c) 2007 Elsevier Ltd. All rights reserved.
Author Liu, Chuanxiang
Qian, Xuhong
Wang, Jiaobing
Li, Zhong
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Snippet Strong electron-deficient heterocycles of acetyl Fipronil ( F3) was designed and synthesized, its ability for anion recognition was investigated by UV and NMR...
Strong electron-deficient heterocycles of acetyl Fipronil (F3) was designed and synthesized, its ability for anion recognition was investigated by UV and NMR...
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SubjectTerms Chemistry
Chemistry, Organic
Physical Sciences
Science & Technology
Title Anion recognition by a novel Fipronil-based receptor: efficient deprotonation or stable intermolecular hydrogen bonding
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