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Carbon Dioxide Copolymerization Study with a Sterically Encumbering Naphthalene-Derived Oxide

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Figshare2016-02-13 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Carbon_Dioxide_Copolymerization_Study_with_a_Sterically_Encumbering_Naphthalene_Derived_Oxide/2134573
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Poly­(1,4-dihydronaphthalene carbonate) has been prepared via the catalytic coupling of carbon dioxide and 1,4-dihydronaphthalene oxide using chromium­(III) catalysts. The copolymer formation is found to be greatly dependent on the steric environment around the metal center. Traditional (salen)­CrIIIX/cocatalyst systems bearing bulky t-butyl groups hinder the approach of the large monomer, significantly diminishing polymer chain growth and providing the entropically favored cyclic byproduct in excess. In contrast, employing the sterically unencumbered azaannulene-derived catalyst, (tmtaa)­CrIIIX/cocatalyst system (tmtaa = tetramethyltetraazaannulene) shows polymer selectivity close to 90% with three times the activity (TOF = 20–30 h–1). With the use of a bifunctional (salen)­CrIII catalyst, even higher polymer selectivity (>90%) can be observed. The complete synthesis of a new bifunctional tetraazaannulene ligand for a more effective catalyst is also described herein.
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2016-02-13
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