Wybo Nathan, Duval Antoine, Avérous Luc
BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087, Strasbourg Cedex 2, France.
Soprema, 15 rue de Saint Nazaire, 67100, Strasbourg, France.
Angew Chem Int Ed Engl. 2024 Oct 7;63(41):e202403806. doi: 10.1002/anie.202403806. Epub 2024 Sep 6.
Lignin is a widely available second-generation biopolymer and the main potential source of renewable aromatic building blocks. Lignin-based polyamines offer great potential in applications based on chemical and materials sciences. However, common aminations techniques for lignin usually involve toxic chemicals and generate hindered and low reactivity amines. In this study, we developed two new, simple, and benign 2-step methodologies for the elaboration of lignin-based polyamines from different technical lignins (kraft, soda and organosolv) with a selectivity towards reactive primary amines. These methods involve grafting amide groups onto lignin followed by a hydrolysis step. Non-toxic heterocyclic compounds N-acetyl-2-oxazolidinone and 2-methyl-2-oxazoline were used as amidation agents. Hydrolysis was performed in acetone-water mixtures. Reactions were studied on model compounds and optimized on lignins. Aminated lignins were fully characterized and primary amines were quantified using quantitative F NMR. Our methods generated aminated lignins with low apparent molar masses and high solubility in water and solvents. Nitrogen contents of the products ranged between 2.0 and 3.5 mmol/g with reactive primary amines counts up to 1.7 mmol/g. These soluble and reactive lignin-based polyamines offer great potential as a replacement for fossil-based polyamines in e.g., the synthesis of aromatic polymer materials or as potential chelating, antibacterial agents.
木质素是一种广泛可得的第二代生物聚合物,也是可再生芳香族结构单元的主要潜在来源。基于木质素的多胺在化学和材料科学应用中具有巨大潜力。然而,常见的木质素胺化技术通常涉及有毒化学品,且会生成受阻和低反应活性的胺。在本研究中,我们开发了两种新的、简单且温和的两步法,用于从不同的工业木质素(硫酸盐法、苏打法和有机溶剂法)制备基于木质素的多胺,并对反应性伯胺具有选择性。这些方法包括将酰胺基团接枝到木质素上,然后进行水解步骤。使用无毒杂环化合物N - 乙酰 - 2 - 恶唑烷酮和2 - 甲基 - 2 - 恶唑啉作为酰胺化剂。水解在丙酮 - 水混合物中进行。对模型化合物进行了反应研究,并在木质素上进行了优化。对胺化木质素进行了全面表征,并使用定量F NMR对伯胺进行了定量。我们的方法生成的胺化木质素具有低表观摩尔质量,在水和溶剂中具有高溶解度。产物的氮含量在2.0至3.5 mmol/g之间,反应性伯胺计数高达1.7 mmol/g。这些可溶且具有反应活性的基于木质素的多胺在例如芳香族聚合物材料的合成中作为化石基多胺的替代品,或作为潜在的螯合剂、抗菌剂具有巨大潜力。