Ultralight and hydrophobic PVDF/PMMA open-cell foams with outstanding heat-insulation and oil-adsorption performances fabricated by CO2 molten foaming

材料科学 复合材料 保温 多孔性 吸附 发泡剂 化学工程 图层(电子) 化学 有机化学 工程类
作者
Zhanlin Shi,Guoqun Zhao,Lei Zhang,Guilong Wang,Jialong Chai
出处
期刊:Journal of CO2 utilization [Elsevier BV]
卷期号:63: 102108-102108 被引量:47
标识
DOI:10.1016/j.jcou.2022.102108
摘要

Heat-insulation and oil-water separation are critical issues in the area of energy conservation and environmental protection. Developing high-expansion open-cell polymer foams with excellent heat insulation and oil-absorption properties is an essential way to solve the above problems. An innovative method for fabricating lightweight PVDF open-cell foam via blending with PMMA followed by a supercritical carbon dioxide molten foaming process was proposed, and ultralight and hydrophobic polymer open-cell foams with outstanding heat insulation and oil-absorption properties were successfully prepared. PMMA not only delays cooling crystallization behavior of PVDF but also improves the melt viscoelasticity. As a result, the open-cell polymer foam with an expansion ratio of up to 43.2, open porosity of 98.6 %, and a density of 0.0361 g/cm 3 can be obtained. Benefiting from high expansion ratio and high open porosity, the blend foam displays a thermal conductivity of 31.07 mW∙m −1 ∙K −1 , an adsorption capacity for various oils as high as 8.1–23.1 g/g, and favorable cycle durability. This work provides a green and sustainable method for mass production of better-behaved foam materials for heat insulation and oil-water separation. • An innovative method for fabricating lightweight PVDF open-cell foam was proposed. • The foam with an expansion ratio of 43.2 and open-porosity of 98.6% was obtained. • The ultralight open-cell foams offer outstanding thermal insulation property. • The blend foams have high adsorption capacity and favorable cycle durability.
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