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Effect of crosslinking patterns on the properties of conjugated microporouspolymers
Author(s) -
Hakan Bildirir
Publication year - 2019
Publication title -
turkish journal of chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.239
H-Index - 46
eISSN - 1303-6130
pISSN - 1300-0527
DOI - 10.3906/kim-1808-12
Subject(s) - chemistry , conjugated system , conjugated microporous polymer , monomer , microporous material , polymer , benzene , condensation polymer , polymer chemistry , absorption (acoustics) , characterization (materials science) , photochemistry , porosity , sonogashira coupling , organic chemistry , nanotechnology , palladium , materials science , composite material , catalysis
Syntheses and detailed spectroscopic characterizations of two similar conjugated microporous polymers formed by A4 $+$ B2 and A2 $+$ B3 type functional monomers via Sonogashira--Hagihara polycondensation are presented in this report. The two porous polymeric networks possess mono-, di-, and tri- (1-, 1,4-, and 1,3,5-, respectively) substituted benzene rings and fused thiophenic moieties (dithienothiophenes). Because of the different conjugation patterns, their solid state nuclear magnetic resonance, infrared, and ultraviolet/visible light absorption analyses indicated significant differences. Besides the discussions on the porous properties of the obtained polymeric networks, the presented spectroscopic investigations can be useful for identifying the structure-property relationship of the novel conjugated porous polymeric structures, since the characterization of such nonsoluble compounds by using fundamental techniques is always a challenge.

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