Jash Apratim, Paliyath Gopinadhan, Lim Loong-Tak
Department of Food Science, University of Guelph ON N1G2W1 Canada
Department of Plant Agriculture, University of Guelph ON N1G2W1 Canada.
RSC Adv. 2018 May 30;8(36):19930-19938. doi: 10.1039/c8ra03137a.
Hexanal and benzaldehyde are naturally-occurring aroma compounds from plants with enzyme-inhibition and antimicrobial properties. Although useful for food preservation applications, the end-use of these compounds can be challenging due to their volatility and susceptibility to oxidative degradation. In this study, stable precursors for benzaldehyde and hexanal were synthetized reversible condensation reactions with ,'-dibenzylethane-1,2-diamine. The molecular structures of the resulting 1,3-dibenzylethane-2-phenyl and 1,3-dibenzylethane-2-pentyl imidazolidines were confirmed by NMR analyses. The precursors were encapsulated in poly(lactic acid) fibers electrospinning, using a 90 : 10 ethyl formate : dimethyl sulfoxide blend as a solvent. Triggered release of benzaldehyde and/or hexanal from the resulting active nonwovens was achieved by the addition of 1 N citric acid, which can be described using a pseudo first order kinetic equation involving rapid and slow release steps.
己醛和苯甲醛是植物中天然存在的具有酶抑制和抗菌特性的香气化合物。尽管这些化合物对食品保鲜应用有用,但由于它们的挥发性和易受氧化降解的影响,其最终用途可能具有挑战性。在本研究中,通过与1,2 - 二苄基乙烷 - 1,2 - 二胺的可逆缩合反应合成了苯甲醛和己醛的稳定前体。通过核磁共振分析确认了所得的1,3 - 二苄基乙烷 - 2 - 苯基和1,3 - 二苄基乙烷 - 2 - 戊基咪唑啉的分子结构。使用90∶10的甲酸乙酯∶二甲基亚砜混合物作为溶剂,通过静电纺丝将前体包裹在聚乳酸纤维中。通过添加1N柠檬酸实现了从所得活性非织造布中触发释放苯甲醛和/或己醛,这可以用涉及快速和缓慢释放步骤的伪一级动力学方程来描述。