Calix[4]arene‐Based (Hemi)carcerands and Carceplexes: Synthesis, Functionalization, and Molecular Modeling Study
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Willem Verboom | David N. Reinhoudt | Peter Timmerman | D. Reinhoudt | W. Verboom | J. Duynhoven | F. V. Veggel | Frank C. J. M. van Veggel | P. Timmerman | André M.A. van Wageningen | John P. M. van Duynhoven | A. V. Wageningen
[1] R. Chapman,et al. Carceplex formation: scope of a remarkably efficient encapsulation reaction , 1994 .
[2] H. Berendsen,et al. COMPUTER-SIMULATION OF MOLECULAR-DYNAMICS - METHODOLOGY, APPLICATIONS, AND PERSPECTIVES IN CHEMISTRY , 1990 .
[3] M. Feigel. Rotation barriers of amides in the gas phase , 1983 .
[4] David Neuhaus,et al. The Nuclear Overhauser Effect in Structural and Conformational Analysis , 1989 .
[5] Jean-Marie Lehn,et al. Light‐Triggered Molecular Devices: Photochemical Switching Of optical and Electrochemical Properties in Molecular Wire Type Diarylethene Species , 1995 .
[6] B. Feringa,et al. CHIROPTICAL SWITCHING BETWEEN LIQUID CRYSTALLINE PHASES , 1995 .
[7] D. Reinhoudt,et al. Hydrophobic concave surfaces and cavities by combination of calix[4]arenes and resorcin[4]arenes , 1995 .
[8] T. Erker,et al. The Lawesson reagent as selective reducing agent for sulfoxides , 1992 .
[9] J Fraser Stoddart,et al. A molecular shuttle. , 1991, Journal of the American Chemical Society.
[10] Jean-Marie Lehn,et al. A Dual‐Mode Molecular Switching Device: Bisphenolic Diarylethenes with Integrated Photochromic and Electrochromic Properties , 1995 .
[11] Structure determination of a tetrasaccharide: transient nuclear Overhauser effects in the rotating frame , 1984 .
[12] W. F. V. Gunsteren,et al. Moleküldynamik‐Computersimulationen; Methodik, Anwendungen und Perspektiven in der Chemie , 1990 .
[13] J. F. Stoddart,et al. A chemically and electrochemically switchable molecular shuttle , 1994, Nature.
[14] B. Feringa,et al. A Highly Stereoselective Optical Switching Process Based on Donor–Acceptor Substituted Dissymmetric Alkenes , 1995 .
[15] A. Keating,et al. Gating as a Control Element in Constrictive Binding and Guest Release by Hemicarcerands , 1996, Science.
[16] Kenneth B. Wiberg,et al. Amides. 3. Experimental and Theoretical Studies of the Effect of the Medium on the Rotational Barriers for N,N-Dimethylformamide and N,N-Dimethylacetamide , 1995 .
[17] F. Bordwell,et al. The relative ease of removing a proton, a hydrogen atom, or an electron from carboxamides versus thiocarboxamides , 1988 .
[18] Roland L. Dunbrack,et al. Cis-Trans Imide Isomerization of the Proline Dipeptide , 1994 .
[19] T. Gramstad,et al. Thioamides and nitriles as proton acceptors in hydrogen bond formation and a discussion of solvent shifts in electronic spectra , 1969 .
[20] M. Karplus,et al. Pathways for conformational interconversion of calix[4]arenes , 1995 .
[21] D. Reinhoudt,et al. Combination of calix[4]arenes and resorcin[4]arenes for the complexation of steroids , 1996 .
[22] E. W. Meijer,et al. CHIROPTICAL MOLECULAR SWITCH , 1991 .
[23] Ben L. Feringa,et al. Dynamic Control and Amplification of Molecular Chirality by Circular Polarized Light , 1996, Science.
[24] M. Karplus,et al. CHARMM: A program for macromolecular energy, minimization, and dynamics calculations , 1983 .
[25] Emily P. Dudek,et al. Proton magnetic resonance spectra of thiocarboxamides , 1967 .
[26] Richard R. Ernst,et al. Investigation of exchange processes by two‐dimensional NMR spectroscopy , 1979 .
[27] O. Grummitt,et al. Thermal Dissociation of Methyldihydrothiophene-1-dioxides1 , 1950 .
[28] G. Bodenhausen,et al. Principles of nuclear magnetic resonance in one and two dimensions , 1987 .
[29] J. Sherman,et al. An Asymmetric Carceplex and New Crystal Structure Yield Information Regarding a 1 Million-Fold Template Effect , 1995 .
[30] Ad Bax,et al. MLEV-17-based two-dimensional homonuclear magnetization transfer spectroscopy , 1985 .
[31] Andrew J. P. White,et al. Bis[2]catenanes and a bis[2]rotaxane–Model Compounds for Polymers with Mechanically Interlocked Components† , 1996 .
[32] D. Reinhoudt,et al. Ein neuer Typ von Stereoisomerie bei aus Calix[4]aren‐Einheiten aufgebauten Carceplexen , 1994 .
[33] Richard R. Ernst,et al. Direct determination of rate constants of slow dynamic processes by two-dimensional \"accordion\" spectroscopy in nuclear magnetic resonance , 1982 .
[34] A. Bax,et al. Complete proton and carbon-13 assignments of coenzyme B12 through the use of new two-dimensional NMR experiments , 1986 .
[35] D. Reinhoudt,et al. A novel type of stereoisomerism in calix[4]arene-based carceplexes , 1994 .
[36] S. Forsén,et al. Barrier to internal rotation in amides. IV. N,N-Dimethylamides. Substituent and solvent effects , 1972 .
[37] Ben L. Feringa,et al. Ein hoch stereoselektiver optischer Schaltprozeß auf der Basis von Donor-Acceptor-substituierten dissymetrischen Alkenen† , 1995 .
[38] J. Sherman. Carceplexes and hemicarceplexes: Molecular encapsulation—From hours to forever , 1995 .
[39] C. Breneman,et al. Resonance interactions in acyclic systems. 3. Formamide internal rotation revisited. Charge and energy redistribution along the C-N bond rotational pathway , 1992 .
[40] K. Schaumburg,et al. Synthesis and electrochemical properties of 1,4-dithiafulvenyl-substituted bianthrone molecules with potential application as molecular switches , 1993 .
[41] M. Karplus,et al. Conjugate peak refinement: an algorithm for finding reaction paths and accurate transition states in systems with many degrees of freedom , 1992 .
[42] Gerald B. Matson,et al. Gas-phase nuclear magnetic resonance investigation of chemical exchange in N,N-dimethylacetamide. Medium effects on kinetic parameters , 1984 .
[43] R. Chapman,et al. Study of Templation and Molecular Encapsulation Using Highly Stable and Guest-Selective Self-Assembling Structures , 1995 .
[44] L. F. Hatch,et al. 3-Sulfolene: A butadiene source for a Diels-Alder synthesis: An undergraduate laboratory experiment , 1968 .