Cifarelli Angelica, Boggioni Laura, Vignali Adriano, Tritto Incoronata, Bertini Fabio, Losio Simona
Institute for Chemical Sciences and Technologies "G. Natta" National Research Council, Via A. Corti 12, 20133 Milan, Italy.
Polymers (Basel). 2021 Feb 18;13(4):612. doi: 10.3390/polym13040612.
Bio-polyols from epoxidized soybean and linseed oils and caprylic acid or 3-phenyl butyric acid were prepared using an environmentally friendly, solvent-free method evaluating the presence of triethylamine as catalyst. Side reactions, leading to a cross-linking structure with high density, were reduced, introducing the catalyst and properly tuning the reaction conditions. A medium functionality value of around 3 along with a hydroxyl number up to around 90 mg KOH/g, narrow polydispersity index, and relatively low molecular mass up to 2400 g/mol were the experimental targets. From selected bio-polyols and an aliphatic partially bio-based isocyanate, a series of water blown polyurethane (PU) foams was produced, estimating the effect of the chemical nature of substituents in the polyol backbone on the PU properties. The apparent density of the foams was in the range of 79-113 kg/m, with higher values for foams from the aromatic acid. Flexible polyurethane foams with open cell structure from bio-based polyols were obtained, with higher cavity size and lower pore sizes for foams from caprylic acid. The bio-based flexible PU foams showed comparable Young's moduli (14-18 kPa) and compression deflection values (4.6-5.5 kPa) and exhibited an almost complete recovery of their initial size.
采用环境友好的无溶剂方法,以三乙胺为催化剂,制备了来自环氧化大豆油和亚麻籽油与辛酸或3-苯基丁酸的生物多元醇。通过引入催化剂并适当调整反应条件,减少了导致高密度交联结构的副反应。实验目标是获得中等官能度值约为3、羟值高达约90 mg KOH/g、窄多分散指数以及相对低分子量高达2400 g/mol的产物。从选定的生物多元醇和脂肪族部分生物基异氰酸酯出发,制备了一系列水发泡聚氨酯(PU)泡沫,评估了多元醇主链中取代基的化学性质对PU性能的影响。泡沫的表观密度在79 - 113 kg/m范围内,由芳香酸制成的泡沫密度更高。获得了具有开孔结构的由生物基多元醇制成的软质聚氨酯泡沫,由辛酸制成的泡沫具有更大的泡孔尺寸和更小的孔径。生物基软质PU泡沫表现出可比的杨氏模量(14 - 18 kPa)和压缩挠度值(4.6 - 5.5 kPa),并且几乎完全恢复到其初始尺寸。