By Francisco Bezanilla (auth.), Oliver Hayden, Kornelius Nielsch (eds.)
Molecular- and Nano-Tubes summarizes contemporary developments within the synthesis, fabrication and purposes of tubular constructions. An interdisciplinary evaluation of leading edge technology serious about tubular constructions is equipped. The reader is available an summary of different fields that molecular and nano tubes seem in, in an effort to examine the elemental fundamentals in addition to the purposes of those fabrics. This e-book additionally:
- Shows how nanotechnology creates novel fabrics through crossing the limitations among biology and fabric technological know-how, electronics and optics, drugs and more
- Demonstrates that tubes are a primary point in nature and utilized in disparate functions corresponding to ion channels and carbon nanotubes
Molecular- and Nano-Tubes is an amazing quantity for researchers and engineers operating in fabrics technology and nanotechnology.
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Additional resources for Molecular- and Nano-Tubes
J. 79, 2583–2604 (2000). A. The effects of bilayer thickness and tension on gramicidin single-channel lifetime. Biochim. Biophys. Acta. 735, 95–103 (1983). , II. Ion channels as tools to monitor lipid bilayer-membrane protein interactions: gramicidin channels as molecular force transducers. Methods Enzymol. 294, 208–224 (1999). Hille, B. Ionic Channels of Excitable Membranes. Sinauer, Sunderland, MA (2001). Chapter 3 Self-Assembled Organic Nanotubes and Their Applications in Nano-Bio Fields Toshimi Shimizu Abstract We focus on the template-independent self-assembly of organic nanotubes, which are recently breaking new ground every day under the influence of the bloom of carbon nanotube (CNT) researches.
Fully hydrated samples of 13, 14, and 15 gave relatively higher Tg–l by 40–80◦ C as compared to that of m-phenol glucoside derivatives 5. Therefore, all the glucoside compounds 13, 14, and 15 are found to exist in a solid state at room temperature. Depending on the degree of unsaturation, the glycolipids 13, 14, and 15 self-assembled into twisted nanofibers, helical ribbons, and nanotubes with 70 nm in inner diameters, respectively. 4 Graphitic Nanotubes (GNTs) Aida’s research group has recently succeeded in the formation of nanotube architectures by the self-assembly of amphiphilic hexa-peri-hexabenzocoronene (HBC) derivatives that involve the 13 species of benzene units carved out from graphene 44 T.
Single-molecule methods for monitoring changes in bilayer elastic properties. Methods Mol. Biol. 400, 543–570 (2007). Helfrich, P. and Jakobsson, E. Calculation of deformation energies and conformations in lipid membranes containing gramicidin channels. Biophys. J. 57, 1075–1084 (1990). Nielsen, C. S. Inclusion-induced bilayer deformations: effects of monolayer equilibrium curvature. Biophys. J. 79, 2583–2604 (2000). A. The effects of bilayer thickness and tension on gramicidin single-channel lifetime.
Molecular- and Nano-Tubes by Francisco Bezanilla (auth.), Oliver Hayden, Kornelius Nielsch (eds.)