Trivalent boron as acceptor chromophore in asymmetrically substituted 4,4′-biphenyl and azobenzene for non-linear optics
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Materials Chemistry,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/1991/JM/JM9910100997
Reference15 articles.
1. Nonlinear optical characteristics of novel inorganic chromophores using the Zindo formalism
2. Three coordinate phosphorus and boron as π-donor and π-acceptor moieties respectively, in conjugated organic molecules for nonlinear optics: crystal and molecular structures of E-Ph–CHCH–B(mes)2, E-4-MeO–C6H4–CHCH-B(mes)2, and E-Ph2P–CHCH–B(mes)2[mes = 2,4,6-Me3C6H2]
3. A new zwitterionic salt for non-linear optics: {4′-[methyl(diphenyl)phosphonio]biphenyl-4-yl}triphenylborate
4. Studies in Stereochemistry. XXII. The Preparation and Reactions of Trimesitylborane. Evidence for the Non-localized Nature of the Odd Electron in Triarylborane Radical Ions and Related Free Radicals1
5. CCLXXIV.—Orientation effects in the diphenyl series. Part III. The mononitro-4 : 4′-dihalogenodiphenyls and some allied compounds
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