Electric Literature of C8H17BrO. Aromatic compounds can be divided into two categories: single heterocycles and fused heterocycles. Compound: 8-Bromooctan-1-ol, is researched, Molecular C8H17BrO, CAS is 50816-19-8, about Chiral Reaction Field with Thermally Invertible Helical Sense that Controls the Helicities of Conjugated Polymers. Author is Akagi, Kazuo; Yamashita, Tomohiro; Horie, Keita; Goh, Munju; Yamamoto, Masaharu.
A chiral reaction field with thermally invertible helical sense enables control of the helicity of the reaction product, which is a central challenge in asym. synthesis that has yet to be overcome. A novel chiral compound comprising two types of chiral moieties with opposite helicities and temperature dependences is synthesized; this compound is added as a chiral dopant to a mixture of nematic liquid crystals to prepare a chiral nematic liquid crystal (N*-LC). The N*-LC containing the chiral dopant exhibits thermally invertible helicity to yield left- and right-handed helical senses at low and high temperatures, resp. Interfacial polymerization of acetylene is achieved in the N*-LC by modulating the temperature Helical polyacetylenes (H-PAs) that are synthesized at low (-12°C) and high (28°C) temperature show right- and left-handedness, resp., in terms of the fibrils, fibril bundles, and spiral morphol. In addition, the helical sense of H-PA is opposite that of the N*-LC because of the peculiar polymerization mechanism for acetylene in the N*-LC. The current N*-LC is the first chiral reaction field that has not only the thermally invertible helical sense but also the chem. functions and stability needed to serve as the medium for polymer reactions.
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