523978-90-7Relevant academic research and scientific papers
The Helix to Super-Helix Transition in the Self-Assembly of π-Systems: Superseding of Molecular Chirality at Hierarchical Level
Hifsudheen, Mohamed,Mishra, Rakesh K.,Vedhanarayanan, Balaraman,Praveen, Vakayil K.,Ajayaghosh, Ayyapanpillai
, p. 12634 - 12638 (2017)
Higher-order super-helical structures derived from biological molecules are known to evolve through opposite coiling of the initial helical fibers, as seen in collagen protein. A similar phenomenon is observed in a π-system self-assembly of chiral oligo(p
Modular engineering of H-bonded supramolecular polymers for reversible functionalization of carbon nanotubes
Llanes-Pallas, Anna,Yoosaf,Traboulsi, Hassan,Mohanraj, John,Seldrum, Thomas,Dumont, Jacques,Minoia, Andrea,Lazzaroni, Roberto,Armaroli, Nicola,Bonifazi, Davide
, p. 15412 - 15424 (2011/11/12)
A H-bond-driven, noncovalent, reversible solubilization/functionalization of multiwalled carbon nanotubes (MWCNTs) in apolar organic solvents (CHCl 3, CH2Cl2, and toluene) has been accomplished through a dynamic combinatio
Distance-independent photoinduced energy transfer over 1.1 to 2.3 nm in ruthenium trisbipyridine-fullerene assemblies
Chaignon, Frederique,Torroba, Javier,Blart, Errol,Borgstroem, Magnus,Hammarstroem, Leif,Odobel, Fabrice
, p. 1272 - 1284 (2007/10/03)
Ruthenium trisbipyridine C60 dyads linked via para-phenyleneethynylene units have been prepared. They displayed a rapid energy transfer from Ru to C60 with a rate that was independent of distance, from 1.1 to 2.3 nm. The results are
A facile synthetic route to monodisperse asymmetrical oligo(phenylene- ethynylene)s
Zhao, Jinling,Bo, Zhishan
, p. 1391 - 1402 (2007/10/03)
Monodisperse asymmetrical oligo(phenylene-ethynylene)s were synthesized iteratively by combining the selective deprotection and the Sonogashira coupling. Trimethylsilylethyl ester (TSE) and trimethylsilyl (TMS) were used as protecting groups for carboxyl
Synthesis and properties of a novel through-space conjugated polymer with [2.2] paracyclophane and ferrocene in the main chain
Morisaki, Yasuhiro,Chujo, Yoshiki
, p. 9319 - 9324 (2007/10/03)
The novel conjugated polymer (12) which has [2.2]paracyclophane and ferrocene units in the polymer backbone was synthesized by palladium-catalyzed polycondensation of the monomer (10) with diiodoferrocene (11). The obtained polymer (12) was soluble in com
