4.8 Article

Effects of Molecular Weight upon Irradiation-Cross-Linked Poly(vinyl alcohol)/Clay Aerogel Properties

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 7, Issue 36, Pages 20208-20214

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b05776

Keywords

aerogel; poly(vinyl alcohol); molecular weight; gamma irradiation; mechanical properties

Funding

  1. National Science Foundation of China [51403192]
  2. Innovation Foundation of Institute of Nuclear Physics and Chemistry [2013CX04]

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Facile fabrication of mechanically strong poly(vinyl alcohol) (PVOH)/clay aerogel composites through a combination of increasing polymer molecular weights and gamma irradiation-cross-linking is reported herein. The aerogels produced from high polymer molecular weights exhibit significantly increased compressive moduli, similar to the effect of irradiation-induced cross-linking. The required irradiation dose for fabricating strong PVOH composite aerogels with dense microstructure decreased with increasing polymer molecular weight. Neither thermal stability nor flammability was significantly changed by altering the polymer molecular weight or by modest gamma irradiation, but they were highly dependent upon the polymer/clay ratio in the aerogel. Optimization of the mechanical, thermal, and flammability properties of these composite aerogels could therefore be obtained by using relatively low levels of polymer, with very high polymer molecular weight, or lower molecular weight coupled with moderate gamma irradiation. The facile preparation of strong, low flammability aerogels is an alternative to traditional polymer foams in applications where fire safety is important.

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