FRONTAL POLYMERIZATION-TRIGGERED SIMULTANEOUS RING-OPENING METATHESIS POLYMERIZATION AND CROSS METATHESIS AFFORDS ANISOTROPIC MACROPOROUS DICYCLOPENTADIENE CELLULOSE NANOCRYSTAL FOAM

Frontal polymerization-triggered simultaneous ring-opening metathesis polymerization and cross metathesis affords anisotropic macroporous dicyclopentadiene cellulose nanocrystal foam

Frontal polymerization-triggered simultaneous ring-opening metathesis polymerization and cross metathesis affords anisotropic macroporous dicyclopentadiene cellulose nanocrystal foam

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Polymeric solid foams have several beneficial properties such as their light weight, thermal insulation or shock absorbance, but Anti-Blemish it is still challenging to efficiently control the foam architecture.Here, the authors optimize the frontal polymerization of Vegan Supplements dicyclopentadiene with allyl-functionalized cellulose nanocrystals to rapidly achieve solid foams with modified structures and enhanced oxidation resistance.

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