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69. Luppi, G., Soffre, C., and Tomasini, C. (2004) Stabilizing effects in oxazolidin-2-ones-con-
taining pseudopeptides. Tetrahedron Asymm. , 15 , 1645-1650.
70. Tomasini, C., Luppi, G., and Monari, M. (2006) Oxazolidin-2-one-containing pseudopeptides
that fold into b-Bend ribbon spirals. J. Am. Chem. Soc. , 128 , 2410-2420.
71. (a) Angelici, G., Falini, G., Hofmann, H.-J. et al. (2008) A fiberlike peptide material
stabilized by single intermolecular hydrogen bonds. Angew. Chem. Int. Ed. , 47 , 8075-
8078; (b) Angelici, G., Falini, G., Hofmann, H.-J. et al. (2009) Nanofibers from Oxazo-
lidi-2-one containing hybrid foldamers: what is the right molecular size? Chem.Eur.J. ,
15 , 8037-8048.
72. Angelici, G., Castellucci, N., Falini, G. et al. (2010) Pseudopeptides designed to form supra-
molecular helixes: the role of the stereogenic centers. Crystal Growth Des. , 10 , 923-929.
73. (a) Huc, I. (2004) Aromatic oligoamide foldamers. Eur. J. Org. Chem. , 1 , 17-29; (b) Saraogi,
I. and Hamilton, A.D. (2009) Recent advances in the development of aryl-based foldamers.
Chem. Soc. Rev. , 38 , 1726-1743; (c) Sanford, A. and Gong, B. (2003) The evolution of helical
foldamers. Curr. Org. Chem. , 7 , 1649-1659.
74. (a) Hamuro, Y., Geib, S.J., and Hamilton, A.D. (1994) Novel molecular scaffolds: formation
of helical secondary structure in a family of oligoanthranilamides. Angew. Chem. Int. Ed. , 33 ,
446-448; (b) Hamuro, Y., Geib, S.J., and Hamilton, A.D. (1996) Oligoanthranilamides. Non-
peptide subunits that show formation of specific secondary structure. J. Am. Chem. Soc. , 118 ,
7529-7541; (c) Hamuro, Y., Geib, S.J., and Hamilton, A.D. (1997) Novel folding patterns in a
family of oligoanthranilamides: non-peptide oligomers that form extended helical secondary
structures. J. Am. Chem. Soc. , 119 , 10587-10593.
75. (a) Tew, G.N., Liu, D.H., Chen, B. et al. (2002) Supramolecular chemistry and self-assembly
special feature: de novo design of biomimetic antimicrobial polymers. Proc. Natl Acad. Sci.
USA , 99 , 5110-5114; (b) Choi, S., Clements, D.J., Pophristic, V. et al. (2005) The design and
evaluation of heparin-binding foldamers. Angew. Chem. Int. Ed. , 44 , 6685-6689.
76. Kolomiets, E., Berl, V., and Lehn, J.M. (2007) Chirality induction and protonation-induced
molecular motions in helical molecular strands. Chem. Eur. J. , 13 , 5466-5479.
77. Gan, Q., Bao, C.Y., Kauffmann, B. et al. (2008) Quadruple and double helices of 8-fluoroqui-
noline oligoamides. Angew. Chem. Int. Ed. , 47 , 1715-1718.
78. Zhang, A.M., Han, Y.H., Yamato, K. et al. (2006) Aromatic oligoureas: enforced folding and
assisted cyclization. Org. Lett. , 8 , 803-806.
79. (a) Sinkeldam, R.W., van Houtem, M., Koeckelberghs, G. et al. (2006) Synthesis of 3,6-diami-
nophthalimides for ureidophthalimide-based foldamers. Org. Lett. , 8 , 383-385; (b) Sinkel-
dam, R.W., van Houtem, M., Pieterse, K. et al. (2006) Chiral Poly(ureidophthalimide)
foldamers in water. Chem. Eur. J. , 12 , 6129-6137.
80. Cai, W., Wang, G.T., Xu, Y.X. et al. (2008) Vesicles and organogels from foldamers: a solvent-
modulated self-assembling process. J. Am. Chem. Soc. , 130 , 6936-6937.
81. (a) Nelson, J.C., Saven, J.G., Moore, J.S., and Wolynes, P.G. (1997) Solvophobically driven
folding of nonbiological oligomers. Science , 277 , 1793-1796; (b) Prince, R.B., Barnes, S.A.,
and Moore, J.S. (2000) Foldamer-based molecular recognition. J. Am. Chem. Soc. , 122 , 2758-
2762; (c) Stone, M.T. and Moore, J.S. (2004) A Water-Soluble m-Phenylene ethynylene fol-
damer. Org. Lett. , 6 , 469-472; (d) Smaldone, R.A. and Moore, J.S. (2008) Sequence depen-
dence of methylation rate enhancement in meta-phenyleneethynylene foldamers. Chem.
Commun ., 2008 , 1011-1013; (e) Smaldone, R.A. and Moore, J.S. (2007) Foldamers as
reactive sieves: reactivity as a probe of conformational flexibility. J. Am. Chem. Soc. , 129 ,
5444-5450; (f) Smaldone, R.A. and Moore, J.S. (2008) Reactive sieving with foldamers:
inspiration from nature and directions for the future. Chem. Eur. J. , 14 , 2650-2657.
82. Khan, A., Kaiser, C., and Hecht, S. (2006) Prototype of a photoswitchable foldamer. Angew.
Chem. Int. Ed. , 45 , 1878-1881.
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