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1.
Nat Commun ; 12(1): 6818, 2021 Nov 24.
Artículo en Inglés | MEDLINE | ID: mdl-34819494

RESUMEN

Topochemical polymerization reactions hold the promise of producing ultra-high molecular weight crystalline polymers. However, the totality of topochemical polymerization reactions has failed to produce ultra-high molecular weight polymers that are both soluble and display variable functionality, which are restrained by the crystal-packing and reactivity requirements on their respective monomers in the solid state. Herein, we demonstrate the topochemical polymerization reaction of a family of para-azaquinodimethane compounds that undergo facile visible light and thermally initiated polymerization in the solid state, allowing for the first determination of a topochemical polymer crystal structure resolved via the cryoelectron microscopy technique of microcrystal electron diffraction. The topochemical polymerization reaction also displays excellent functional group tolerance, accommodating both solubilizing side chains and reactive groups that allow for post-polymerization functionalization. The thus-produced soluble ultra-high molecular weight polymers display superior capacitive energy storage properties. This study overcomes several synthetic and characterization challenges amongst topochemical polymerization reactions, representing a critical step toward their broader application.

2.
Chem Commun (Camb) ; 56(32): 4472-4475, 2020 Apr 25.
Artículo en Inglés | MEDLINE | ID: mdl-32201870

RESUMEN

The generation of a highly-substituted [2.2](2,5)pyrazinophane via a cascade reaction is presented. The pyrazinophane product is formed via the dimerization of a member of the para-azaquinodimethane (p-AQM) family of conjugated quinoidal compounds-reactivity that sheds light on the nature of stability in p-AQMs. Additionally, the electronic and structural nature of this highly-strained ring system are characterized.

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