Facile synthesis of block copolypeptides of defined architecture
Tóm tắt
Từ khóa
Tài liệu tham khảo
Hillmyer, M. A. et al . Complex phase behavior in solvent-free nonionic surfactants. Science 271, 976–978 (1996).
Matsen, M. W. & Bates, F. S. Origins of complex self-assembly in block copolymers. Macromolecules 29, 7641–7644 (1996).
Stupp, S. I. et al . Supramolecular materials: self-organized nanostructurs. Science 276, 384–389 (1997).
Fasman, G. D. Prediction of Protein Structure and the Principles of Protein Conformation(Plenum, New York, (1989)).
Bamford, C. H., Elliot, A. & Hanby, W. E. Synthetic Polypeptides(Academic, New York, (1956)).
Cardinaux, F., Howard, J. C., Taylor, G. T. & Scheraga, H. A. Block copolymers of amino acids. I. Synthesis and structure of copolymers of l-alanine or l-phenylalanine with d,l-lysine- d 7or d,l-lysine. Biopolymers 16, 2005–2028 (1977).
Howard, J. C., Cardinaux, F. & Scheraga, H. A. Block copolymers of amino acids. II. Physicochemical data on copolymers containing l-alanine or l-phenylalanine. Biopolymers 16, 2029–2051 (1977).
Gratzer, W. B. & Doty, P. Aconformational examination of poly-l-alanine and poly-d,l-alanine in aqueous solution. J. Am. Chem. Soc. 85, 1193–1197 (1963).
Inoue, K. et al . Preparation and conformation of hexaarmed star poly(β-benzyl-l-aspartates) utilizing hexakis(4-aminophenoxy) cyclotriphosphazene. J. Am. Chem. Soc. 116, 10783–10784 (1994).
Kubota, S. & Fasman, G. D. The β conformation of polypeptides of valine, isoleucine, and threonine in solution and solid-state: optical and infrared studies. Biopolymers 14, 605–631 (1975).
Kricheldorf, H. R. α-Aminoacid-N-Carboxyanhydrides and Related Materials(Springer, New York, (1987)).
Kricheldorf, H. R. in Models of Biopolymers by Ring-Opening Polymerization(ed. Penczek, S.) (CRC, Boca Raton, (1990)).
Idelson, M. & Blout, E. R. Polypeptides XV. Infrared spectroscopy and the kinetics of the synthesis of polypeptides: primary amine initiated reactions. J. Am. Chem. Soc. 79, 3948–3957 (1957).
Idelson, M. & Blout, E. R. Polypeptides XVIII. A kinetic study of the polymerization of amino acid N -carboxyanhydrides initiated by strong bases. J. Am. Chem. Soc. 80, 2387–2393 (1958).
Lundberg, R. D. & Doty, P. Polypeptides XVII. A study of the kinetics of the primary amine-initiated polymerization of N -carboxyanydrides with special reference to configurational and stereochemical effects. J. Am. Chem. Soc. 79, 3961–3972 (1957).
Deming, T. J. Polypeptide materials: new synthetic methods and applications. Adv. Mater. 9, 299–311 (1997).
Deming, T. J. Transition metal–amine initators for preparation of well-defined poly(γ-benzyl-l-glutamate). J. Am. Chem. Soc. 119, 2759–2760 (1997).
Fetters, L. J. in Encyclopedia of Polymer Science and Engineering 2nd edn 19–25 (Wiley-Interscience, New York, (1987)).
Collman, J. P., Hegedus, L. S., Norton, J. R. & Finke, R. G. Principles and Applications of Organotransition Metal Chemistry 2nd edn(University Science, Mill Valley, (1987)).
Uhlig, E., Fehske, G. & Nestler, B. Z. Reaktionen cyclischer Carbonsaueureanhydride mit (α,α′-Dipyridyl)-(cyclooctadien-1,5)-nickel. Anorg. Allg. Chem. 465, 141–146 (1980).
Sano, K., Yamamoto, T. & Yamamoto, A. Preparation of Ni- or Pt-containing cyclic esters by oxidative addition of cyclic carboxylic anhydrides and their properties. Bull. Chem. Soc. Jpn 57, 2741–2747 (1984).
Castaño, A. M. & Echavarren, A. M. Reactivity of a nickelacycle derived from aspartic acid: alkylations, insertions, and oxidations. Organometalics 13, 2262–2268 (1994).
Block, H. Poly(γ-benzyl-l-glutamate) and Other Glutamic Acid Containing Polymers(Gordon and Breach, New York, (1983)).
Noshay, A. & McGrath, J. E. Block Copolymers(Academic, New York, (1977)).