Marcioni Massimo, Alongi Jenny, Ranucci Elisabetta, Malinconico Mario, Laurienzo Paola, Ferruti Paolo, Manfredi Amedea
Dipartimento di Chimica, Università Degli Studi di Milano, via C. Golgi 19, 20133 Milano, Italy.
Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Alessandria Campus, Viale T. Michel, 15121 Alessandria, Italy.
Polymers (Basel). 2021 Mar 25;13(7):1018. doi: 10.3390/polym13071018.
The hitherto known polyamidoamines (PAAs) are not suitable as structural materials because they are usually water-soluble or swellable in water. This paper deals with the synthesis and characterization of semi-crystalline hydrophobic PAAs (H-PAAs) by combining different bis--amines with bis-acrylamides obtained from C6-C12 bis--amines. H-PAAs were initially obtained in a solution of benzyl alcohol, a solvent suitable for both monomers and polymers. Their number average molecular weights, M¯n, which were determined with H-NMR by evaluating the percentage of their terminal units, varied from 6000 to >10,000. The solubility, thermal properties, ignitability and water resistance of H-PAAs were determined. They were soluble in organic solvents, semi-crystalline and thermally stable. The most promising ones were also prepared using a bulk process, which has never been previously reported for PAA synthesis. In the form of films, these H-PAAs were apparently unaffected by water. The films underwent tensile and wettability tests. They showed similar Young moduli (260-263 MPa), whereas the maximum stress and the stress at break depended on the number of methylene groups of the starting bis-acrylamides. Their wettability was somewhat higher than that of common Nylons. Interestingly, none of the H-PAAs considered, either as films or powders, ignited after prolonged exposure to a methane flame.
迄今已知的聚酰胺胺(PAAs)不适合用作结构材料,因为它们通常可溶于水或在水中会膨胀。本文通过将不同的双胺与由C6 - C12双胺制得的双丙烯酰胺相结合,研究了半结晶疏水性聚酰胺胺(H - PAAs)的合成与表征。H - PAAs最初是在苄醇溶液中制得的,苄醇是一种适用于单体和聚合物的溶剂。通过¹H - NMR评估其端基单元的百分比来测定它们的数均分子量M̅n,其范围从6000到大于10,000。测定了H - PAAs的溶解性、热性能、可燃性和耐水性。它们可溶于有机溶剂,具有半结晶性且热稳定。最有前景的H - PAAs还采用本体法制备,这在之前的聚酰胺胺合成中从未有过报道。以薄膜形式存在时,这些H - PAAs显然不受水的影响。对薄膜进行了拉伸和润湿性测试。它们显示出相似的杨氏模量(260 - 263 MPa),而最大应力和断裂应力取决于起始双丙烯酰胺的亚甲基数量。它们的润湿性略高于普通尼龙。有趣的是,所研究的H - PAAs无论是薄膜还是粉末形式,在长时间暴露于甲烷火焰后都不会点燃。