Microcellular foams production from nanocomposites based on PS using MOF nanoparticles with enhanced CO2 properties as nucleating agent

Author:

Cuadra-Rodríguez Daniel1ORCID,Qi Xiao-Lin2,Barroso-Solares Suset1,Rodríguez Pérez Miguel Ángel1,Pinto Javier1

Affiliation:

1. Condensed Matter Physics Department, University of Valladolid, Valladolid, Spain

2. IMDEA Materials Institute, Getafe, Madrid, Spain

Abstract

The use of metal-organic frameworks (MOF) nanoparticles as nucleating agents in gas dissolution foaming processes is presented. In this work, MOF nanoparticles with three different particle sizes were synthetized and introduced in film composites based on polystyrene at 1 wt.%. The addition of nanoparticles with high affinity to CO2, which is the gas used as a physical blowing agent, can contribute to increase the nucleation efficiency in comparison with the classical heterogeneous route using non CO2-philic particles. Nanoparticles dispersion in solids and cellular structure in foams were studied as a function of the particle size and foaming parameters, studying for first time the impact of MOF nanoparticles on the nucleation by gas dissolution foaming. Nucleation efficiencies in the order of 10−2 were achieved for PS/MOF composites. In addition, the thermal stability of the cellular structure in the composites was enhanced regarding to PS matrix, preserving the cellular structure regardless the foaming temperature. Therefore, MOF nanoparticles have emerged as promising nucleating agents in foaming procedures.

Funder

Ministerio de Ciencia e Innovación

Ente regional de la energia de Castilla y Leon

Junta de Castilla y León

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,General Chemistry

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