CH-π Interaction as an Important Driving Force of Host-Guest Complexation. Further Evidence for the Selective Incorporation of Alkyl Groups in the Polyhydroxy Aromatic Cavity of Calix[4]resorcarene Host
スポンサーリンク
概要
- 論文の詳細を見る
- 1996-01-15
著者
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Aoyama Y
Kyoto Univ. Kyoto
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AOYAMA Yasuhiro
Institute for Fundamental Research of Organic Chemistry, Kyushu University. CREST, Japan Science and
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KIKUCHI Yasuaki
Department of Chemistry, School of Science of Engineering, Waseda University
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Kikuchi Y
Iwate Univ. Morioka
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Kikuchi Yasuaki
Department Of Chemistry School Of Science Of Engineering Waseda University
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Aoyama Yasuhiro
Institute For Fundamental Research Of Organic Chemistry Kyushu University
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Aoyama Yasuhiro
Section Of Biofunctional Chemistry Department Of Bioengineering Nagoya University Of Technology
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KIKUCHI Yasuaki
Department of Chemical and Biological Engineering, Hachinohe National College of Technology
関連論文
- C-H・・・π Hydrogen Bonding between Electron-Rich Benzene Rings and Polarized C-H Bonds : Selectivity in the Complexation of Highly Hydrophilic Guest Molecules with Calix[4]resorcarene Hosts in Water
- Formation of a Novel Diaqua Disodium Tetrakis (1-methyluracilato) palladium Complex with a Unique Supramolecular Channel Structure
- Catalysis by Organic Solids. Stereoselective Intramolecular Ene Reaction of Citronellal Promoted by Microporous Molecular Crystals Having an Extensive Hydrogen-Bonded Network
- Macrocyclic Saccharide Bundles as a New Type of Firm DNA Binders
- A QCM Study on Adsorption of Macrocyclic Sugar-Cluster to Variously-Functionalized Monolayers
- Application of Bond Energy Density Analysis (Bond-EDA) to Diels-Alder Reaction
- CH-π Interaction as an Important Driving Force of Host-Guest Complexation. Further Evidence for the Selective Incorporation of Alkyl Groups in the Polyhydroxy Aromatic Cavity of Calix[4]resorcarene Host
- Surface Plasmon Resonance Study on the Interaction of Immobilized Macrocyclic Sugar Clusters with Lectins and Water-soluble Polymers
- Lattice Inclusion Complexation in Water. Hydrogen Bonding in Selective Guest Binding and Catalysis
- Selective 3-0-and/or 6-0-Glycosidation of Unprotected O and S-Glycosides Promoted by an Intramolecularly Coordinated Arylboronic Compound
- Stacked Porphyrin Arrays from Hydrogen-Bonded Porphyrin-Resorcinol 1D Chains
- Molecular recognition. 13. 1H NMR chracterization of the hydrogen-bond network in the water complex of resorcinol-dodecanal cyclotetramer.