Halogen Bonding versus Hydrogen Bonding in Driving Self-Assembly Processes Perfluorocarbon-hydrocarbon self-assembly, part IX. This work was supported by MURST (Cofinanziamento '99) and EU (COST-D12-0012). We thank Dr. A. Lunghi and Dr. P. Cardillo (Stazione Sperimentale Combustibili, S. Donato Mila
暂无分享,去创建一个
Corradi | P. Metrangolo | G. Resnati | Meille | Messina | Metrangolo | Resnati | E. Corradi | M. Messina | S. Meille
[1] G. A. Jeffrey,et al. An Introduction to Hydrogen Bonding , 1997 .
[2] T. Koyama,et al. Molecular self-assembly composed of aromatic hydrogen-bond donor[ndash ]acceptor complexes , 1997 .
[3] K. Seddon,et al. The hydrogen bond and crystal engineering , 1994 .
[4] L K Steinrauf,et al. X-ray crystal structure of the Ala-109-->Thr variant of human transthyretin which produces euthyroid hyperthyroxinemia. , 1993, The Journal of biological chemistry.
[5] Gautam R. Desiraju. Supramolekulare Synthone für das Kristall‐Engineering ‐ eine neue organische Synthese , 1995 .
[6] P. Metrangolo,et al. Perfluorocarbon-hydrocarbon self-assembly. Part 3. Liquid phase interactions between perfluoroalkylhalides and heteroatom containing hydrocarbons , 1998 .
[7] O. Hassel,et al. Structural aspects of interatomic charge-transfer bonding. , 1970, Science.
[8] P. Metrangolo,et al. Perfluorocarbon—hydrocarbon self assembling. Thermal and vibrational analyses of one-dimensional networks formed by α,ω-diiodoperfluoroalkanes with K.2.2. and K.2.2.2. , 1998 .
[9] Pierangelo Metrangolo,et al. Racematspaltung von 1,2‐Dibromhexafluorpropan über Halogen‐verbrückte supramolekulare Helices , 1999 .
[10] J. Hildebrand,et al. Liquid-Liquid Solubility of Perfluoromethylcyclohexane with Benzene, Carbon Tetrachloride, Chlorobenzene, Chloroform and Toluene , 1949 .
[11] Henry A. Bent,et al. Structural chemistry of donor-acceptor interactions , 1968 .
[12] Anthony C. Legon. Präreaktive Komplexe der Dihalogene XY mit Lewis‐Basen B in der Gasphase: eine systematische Studie der Halogen‐Analoga B⋅⋅⋅XY der Wasserstoffbrückenbindungen B⋅⋅⋅HX , 1999 .
[13] Frank H. Allen,et al. The Nature and Geometry of Intermolecular Interactions between Halogens and Oxygen or Nitrogen , 1996 .
[14] B. Neumann,et al. Die Umsetzung von Ammoncarbonat Mit Gips , 1921 .
[15] R. Pascal,et al. Azaaromatic Chlorides: A Prescription for Crystal Structures with Extensive Nitrogen-Chlorine Donor-Acceptor Interactions , 1994 .
[16] L. Joris,et al. Hydrogen-bonded complex formation. III. Thermodynamics of complexing by infrared spectroscopy and calorimetry , 1970 .
[17] Jean-Pierre Sauvage,et al. Perspectives in Supramolecular Chemistry , 1999 .
[18] Gautam R. Desiraju,et al. Supramolecular Synthons in Crystal Engineering—A New Organic Synthesis , 1995 .
[19] A. Legon. π‐Electron “Donor–Acceptor” Complexes B⋅⋅⋅ClF and the Existence of the “Chlorine Bond” , 1998 .
[20] P. Metrangolo,et al. Resolution of Racemic 1,2-Dibromohexafluoropropane through Halogen-Bonded Supramolecular Helices. , 1999, Angewandte Chemie.
[21] R. Foster,et al. Organic charge-transfer complexes , 1969 .
[22] G. Resnati,et al. PERFLUOROCARBON-HYDROCARBON SELF-ASSEMBLING. 1D INFINITE CHAIN FORMATION DRIVEN BY NITROGEN...IODINE INTERACTIONS , 1998 .
[23] V. Pedireddi,et al. A novel 2:1 supramolecular assembly of 3,5-dinitrobenzoic acid and 1,4-diiodobenzene , 1998 .
[24] F. Hampel,et al. Stable 1 : 1 Adducts from Iodoacetylenes and Iodide Ions: Ion Pair Strain as an Additional Driving Force? , 1995 .
[25] D. Dorset. Binary phase behavior of perfluoroalkanes , 1990 .
[26] K. Maartmann-moe. The crystal structure of ?-hydroquinone , 1966 .
[27] P. Metrangolo,et al. Perfluorocarbon-hydrocarbon self-assembly. Part 6: 1 α,ω-Diiodoperfluoroalkanes as pseudohalogens in supramolecular synthesis , 1999 .
[28] F. Hampel,et al. STABILE 1:1-ADDUKTE AUS IODACETYLENEN UND IODID-IONEN: IONENPAARSPANNUNG ALS ZUSATZLICHE TRIEBKRAFT? , 1995 .
[29] A. Allred,et al. Halogen Complexes. III. The Association of 2,4,6-Trimethylpyridine and Trifluoroiodomethane , 1965 .
[30] F. Hampel,et al. Ion‐Pair Strain as the Driving Force for Hypervalent Adduct Formation between Iodide Ions and Substituted Iodobenzenes: Structural Alternatives to Meisenheimer Complexes , 1999 .
[31] D. Gurka,et al. Studies of hydrogen-bonded complex formation with p-fluorophenol. IV. Fluorine nuclear magnetic resonance method , 1969 .