Revealing the physical properties of chlorine-substituted poly(acetylene)

cis -3,4-Dichlorocyclobutene was synthesized and polymerized using the Grubbs 3 rd generation catalyst. The corresponding ring-opening metathesis polymerization (ROMP) reaction proceeded in a controlled manner and provided access to narrowly dispersed polymers with tunable molecular weights. Treatin...

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Veröffentlicht in:Polymer chemistry 2023-08, Vol.14 (31), p.358-3586
Hauptverfasser: Cho, Youngsang, Seo, Jinwon, Lu, Sherilyn J, Kang, Songsu, Kim, Yeram, Bielawski, Christopher W
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Sprache:eng
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Zusammenfassung:cis -3,4-Dichlorocyclobutene was synthesized and polymerized using the Grubbs 3 rd generation catalyst. The corresponding ring-opening metathesis polymerization (ROMP) reaction proceeded in a controlled manner and provided access to narrowly dispersed polymers with tunable molecular weights. Treating poly(3,4-dichlorocyclobutene) with an organic base ( e.g. , triethylamine) prompted an elimination reaction and afforded poly(chloroethyne- ran -ethyne) in quantitative yield. The electrical conductivity of a film of the chlorine-substituted poly(acetylene) was measured and found to be comparable to values reported for organic semiconductors (10 -5 Ω −1 cm −1 ). Higher conductivity (10 -2 Ω −1 cm −1 ) values were achieved via p- or n-type doping. A block copolymer that featured a poly(norbornene) segment connected to a chlorine-substituted poly(acetylene) as well as a random copolymer derived from cis -3,4-dichlorocyclobutene and cis -2-ethylhexyl 4-chlorocyclobut-2-ene-1-carboxylate were also synthesized and studied. The copolymers displayed good solubility in organic solvents and valuable electronic properties. The polymers were characterized using various spectroscopic (NMR, FT-IR, UV-vis, XPS, and Raman) and thermal techniques as well as size exclusion chromatography (SEC). Novel conjugated polymers were synthesized by polymerizing cis -3,4-dichlorocyclobutene followed by elimination.
ISSN:1759-9954
1759-9962
DOI:10.1039/d3py00416c