Thermodynamic Parameters for the Complexation of the Pyridinio Derivatives of Cyclodextrins with Some Inorganic Anions in D2O Solution
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Reference10 articles.
1. NMR Spectroscopy of Cyclodextrin–Inorganic Anion Systems
2. Host–Guest Complexation of Mono[6-(1-pyridinio)-6-deoxy]-α-cyclodextrin with Several Inorganic Anions
3. Host—guest complexation of 6-deoxy-6-(1-pyridinio) derivatives of α-cyclodextrin (cyclomaltohexaose) with inorganic anions in aqueous solution
4. 1H NMR Response of Mono[6-(1-pyridinio)-6-deoxy]-α-cyclodextrin to Inorganic Anions
5. Binding Forces Contributing to the Association of Cyclodextrin with Alcohol in an Aqueous Solution
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1. Homogeneous Enantioselective Catalysis in a Continuous-Flow Microreactor: Highly Enantioselective Borohydride Reduction of Ketones Catalyzed by Optically Active Cobalt Complexes;Organic Process Research & Development;2012-05-29
2. Thermodynamics of the Molecular and Chiral Recognition of Cycloalkanols and Camphor by Modified β-Cyclodextrins Possessing Simple Aromatic Tethers;The Journal of Organic Chemistry;2003-12-12
3. Thermodynamic Origin of Molecular Selective Binding of Bile Salts by Aminated β-Cyclodextrins;The Journal of Physical Chemistry B;2003-11-20
4. Quaternary Salts of Pyridines and Related Compounds;Current Organic Chemistry;2003-07-01
5. The Anatomy of the Energetics of Molecular Recognition by Calorimetry: Chiral Discrimination of Camphor by α-Cyclodextrin;Chemistry - A European Journal;2002-08-02
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