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Title: Stability of Organically Modified Montmorillonites and Their Polystyrene Nanocomposites After Prolonged Thermal Treatment

Journal Article · · Chemistry of Materials
DOI:https://doi.org/10.1021/cm061953k· OSTI ID:930452

Melt intercalation of montmorillonite (MMT) into polymeric matrices to improve the mechanical properties of polymers has evolved into a subject of tremendous fundamental and technological interest. The thermal treatment experienced during processing or end use can substantially affect the clay and diminish the target properties of polymer/clay nanocomposites (NCs) because of deintercalation or degradation of surface modifiers. In this work, changes in morphology, chemistry, and thermal stability of organically modified (OM) MMT after annealing in O{sub 2}-rich and N{sub 2} environments are investigated. Degradation of the alkyl ammonium cation occurs at temperatures as low as 105 {sup o}C upon prolonged exposure in an O{sub 2}-rich environment. X-ray diffractometry (XRD) performed in situ establishes the response of two OM-MMTs to elevated temperatures at short times, whereas ex situ XRD provides insight into high-temperature exposure at long times. Active sites on the silicate surfaces are found to induce scission of, as well as chemical interaction with, the chains comprising a polystyrene (PS) matrix. Size-exclusion chromatography indicates that PS chain scission occurs primarily after relatively short annealing times, whereas branching and cross-linking are more prevalent after long exposure times in an O{sub 2}-rich environment.

Research Organization:
Brookhaven National Lab. (BNL), Upton, NY (United States). National Synchrotron Light Source
Sponsoring Organization:
Doe - Office Of Science
DOE Contract Number:
DE-AC02-98CH10886
OSTI ID:
930452
Report Number(s):
BNL-81204-2008-JA; CMATEX; TRN: US200904%%544
Journal Information:
Chemistry of Materials, Vol. 19; ISSN 0897-4756
Country of Publication:
United States
Language:
English