"Aerogel-like" polysiloxane-polyurethane hybrid foams with enhanced mechanical and thermal-insulating properties

被引:32
|
作者
Verdolotti, Letizia [1 ]
Oliviero, Maria [1 ]
Lavorgna, Marino [1 ]
Santillo, Chiara [1 ]
Tallia, Francesca [2 ]
Iannace, Salvatore [1 ]
Chen, Shu [2 ]
Jones, Julian R. [2 ]
机构
[1] CNR, IPCB, Natl Res Council, Inst Polymers Composites & Biomat, Ple E Fermi 1, I-80055 Portici, NA, Italy
[2] Imperial Coll London, Dept Mat, South Kensington Campus, London SW7 2AZ, England
关键词
Hybrid; Polyurethane foam; Aerogel; Compressive strength; Thermal conductivity; SILICA; COMPOSITES;
D O I
10.1016/j.compscitech.2021.108917
中图分类号
TB33 [复合材料];
学科分类号
摘要
New organic-inorganic polyurethane-based hybrids with enhanced mechanical properties and thermal insulation properties are reported. Polyurethane-based hybrids are characterized by the intimate interactions of their inorganic and organic co-networks and prepared by sol-gel approach, have exhibited properties exceeding those of polyurethane foams, e.g. enhanced thermal stability, durability and thermal insulating effectiveness. However, mechanical properties have previously been poor. Here, new porous organic-inorganic materials consisting of a polyurethane network modified by in-situ formation of aerogel-like polysiloxane domains, were developed. They exhibit a multiscale-porosity which enhances the insulation, mechanical and thermal properties. The synthesis was performed through a novel stepwise process consisting of: preparation of a siloxane precursor based on methyl-triethoxysilane and tetraethoxysilane; functionalization of traditional polyol for polyurethane foams with 3-(triethoxysilanepropyl)isocyanate as coupling agent; use of suitable catalysts and silicone surfactants; and foaming with methylene-di-isocyanate compound. The siloxane precursors and coupling agent led to formation of "aerogel-like" polysiloxane domains within the walls and struts of the polyurethane foams. The synthesis method enabled increased incorporation of the "aerogel-like" polysiloxane structures into the foams, compared to literature, with 20 wt% SiO2, reducing thermal conductivity of the hybrid foams 30% compared with pristine polyurethane, in addition to significant improvement in thermal stability and mechanical properties.
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页数:9
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