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Rosette nanotubes

Eenniri H, Deng BL, Ribbe AE. HeUcal rosette nanotubes with tunable chiroptical properties. J Am Chem Soc 2002 124 11064-11072. [Pg.232]

Fig. 13 Schematic illustration of supramolecular self-assembly of 27 forming a left-handed rosette nanotube with L-alanine... Fig. 13 Schematic illustration of supramolecular self-assembly of 27 forming a left-handed rosette nanotube with L-alanine...
Figure 3.9 Hierarchical self-assembly of rosette nanotubes from module 20. Reproduced with permission of Ref. [24]. Figure 3.9 Hierarchical self-assembly of rosette nanotubes from module 20. Reproduced with permission of Ref. [24].
Figure 20 GaC 14 self-assembles into a six-member macrocycle called a rosette. These rosettes stack forming a helical rosette nanotube (HRN)... Figure 20 GaC 14 self-assembles into a six-member macrocycle called a rosette. These rosettes stack forming a helical rosette nanotube (HRN)...
Fenniri, H. Deng, B.-L. Ribbe, A.E. Hallenga, K. Jacob. J. Thiyagarajan, P. Entropically driven self-assembly of multichannel rosette nanotubes. Proc. Natl. Acad. Sci. 2002. 99. 6487-6492. [Pg.665]

Figure 4.7 (a) Light microscopic photograph of a gel formed hy adding cell eulture media (DMEM) to a PA aqueous solution [29]. (b) SEM photograph of self-assembled PA nanofibers network [29]. (e) TEM image of 0.1 mg/ml hehcal rosette nanotubes dispersed in hydrogels [28]. Reprinted with permission fiom Refs. [28,29]. [Pg.86]

Zhang L, Rakotondradany F, Myles AJ, Fenniri H, Webster TJ. Arginine-glycine-aspartic acid modified rosette nanotube-hydrogel composites for bone tissue engineering. Biomaterials 2009 30 1309-20. [Pg.94]

Zhang LJ, Chen YP, Rodriguez J, Fenniri H, Webster TJ. Biomimetic helical rosette nanotubes and nanocrystalline hydroxyapatite coatings on titanium for improving orthopedic implants. Int J Nanomed 2008 3 323-33. [Pg.95]

Chun AL, Moralez JG, Webster TJ, Fenniri H. Helical rosette nanotubes a biomimetic coating for orthopedics. Biomaterials 2005 26 7304-9. [Pg.159]

Eenniri H, Packiarajan M, Vidale KL, Sherman DM, Hallenga K, Wood KV, Stowell JG (2001) Helical rosette nanotubes design, self-assembly, and characterization. J Am Chem Soc 123 3854-3855... [Pg.524]

Sun, L., Webster, T.J., 2013. Self-assembled rosette nanotubes for tissue engineering applications. Conference Proceedings Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society 2013,311-313. [Pg.120]

Fine, E., Zhang, L., Fenniri, H., Webster, T.J., 2009. Enhanced endothehal cell functions on rosette nanotube-coated titanium vascular stents. International Journal of Nanomedicine 4, 91-97. [Pg.274]

T. Yamazaki, H. Fenniri and A. Kovalenko. Structural water drives self-assembly of organic rosette nanotubes and holds host atoms in the channel. Chem. Phys. Chem. 11, 2010, 361-367. [Pg.225]

R. S. Johnson, T. Yamazaki, A. Kovalenko and H. Fenniri. Molecular basis for water-promoted supramolecular chirality inversion in helical rosette nanotubes. J. Am. Chem. Soc. 129, 2007, 5735-5743. [Pg.230]


See other pages where Rosette nanotubes is mentioned: [Pg.267]    [Pg.268]    [Pg.730]    [Pg.267]    [Pg.250]    [Pg.252]    [Pg.87]    [Pg.129]    [Pg.130]    [Pg.151]    [Pg.1508]    [Pg.1547]    [Pg.495]    [Pg.113]    [Pg.265]    [Pg.266]    [Pg.295]    [Pg.191]    [Pg.204]    [Pg.225]   
See also in sourсe #XX -- [ Pg.265 ]




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