Center for Cell-Encapsulation Research, Department of Chemistry, KAIST, Daejeon, 34141, Korea.
HC Lab, 235 Creation Hall, 193 Munji Road, Daejeon, 34051, Korea.
Sci Rep. 2017 Aug 1;7(1):6980. doi: 10.1038/s41598-017-07257-x.
Numerous coating strategies are available to control the surface properties and confer new properties to substrates for applications in energy, environment, biosystems, etc., but most have the intrinsic limitations in the practical setting: (1) highly specific interactions between coating materials and target surfaces are required for stable and durable coating; (2) the coating of bulk substrates, such as fruits, is time-consuming or is not achievable in the conventional solution-based coating. In this respect, material-independent and rapid coating strategies are highly demanded. We demonstrate spray-assisted nanocoating of supramolecular metal-organic complexes of tannic acid and ferric ions. The spray coating developed is material-independent and extremely rapid (<5 sec), allowing for coating of commodity goods, such as shoe insoles and fruits, in the controlled fashion. For example, the spray-coated mandarin oranges and strawberries show significantly prolonged post-harvest shelf-life, suggesting practical potential in edible coating of perishable produce.
有许多涂层策略可用于控制表面性能,并赋予基材新的性能,应用于能源、环境、生物系统等领域,但大多数在实际应用中都存在固有局限性:(1)为了实现稳定和持久的涂层,涂层材料与目标表面之间需要具有高度特异性的相互作用;(2)对于大块基材(如水果)的涂层,传统的基于溶液的涂层既耗时又无法实现。在这方面,人们非常需要一种不依赖材料且快速的涂层策略。我们展示了喷雾辅助的单宁酸和铁离子超分子金属有机配合物的纳米涂层。所开发的喷雾涂层不依赖于材料且非常快速(<5 秒),可控制地对商品物品(如鞋内底和水果)进行涂层。例如,喷雾涂层的蜜橘和草莓的采后货架期明显延长,这表明在易腐农产品的可食用涂层方面具有实际潜力。