Synthesis and optical properties of the first representatives of N,N-disubstituted aminostyryl D–π–A chromophores with tunable hydroxytricyanopyrrole (HTCP) acceptor
Author:
Funder
Russian Science Foundation
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Chemical Engineering
Reference50 articles.
1. Experimental investigations of organic molecular nonlinear optical polarizabilities. 2. A study of conjugation dependences;Cheng;J Phys Chem,1991
2. Fluorescence and two-photon absorption of push–pull aryl(bi)thiophenes: structure–property relationships;Genin;Photochem Photobiol Sci,2012
3. Synthesis and characterization of novel, thermally stable2-aryl-5-dicyanovinylthiophenes and 5-aryl-5′-dicyanovinyl-2,2′-bithiophenes as potentially promising non-linear optical materials;Herbivo;Dyes Pigments,2010
4. Fundamental aspects of property tuning in push–pull molecules;Bureš;RSC Adv,2014
5. Recent synthetic methods for the preparation of charged and uncharged styryl-based NLO chromophores: a review;Seferoğlu;Org Prep Proced Int,2017
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