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基于光二聚化端基化藻酸盐的两亲性分子增强 Pickering 乳液用于 3D 打印。

Light-dimerization telechelic alginate-based amphiphiles reinforced Pickering emulsion for 3D printing.

机构信息

Key Laboratory of Advanced Materials of Tropical Island Resources of Ministry of Education and School of Chemical Engineering and Technology, Hainan University, Haikou, Hainan 570228, China.

Key Laboratory of Advanced Materials of Tropical Island Resources of Ministry of Education and School of Chemical Engineering and Technology, Hainan University, Haikou, Hainan 570228, China.

出版信息

Carbohydr Polym. 2023 Jan 1;299:120170. doi: 10.1016/j.carbpol.2022.120170. Epub 2022 Oct 1.

Abstract

Functional Pickering emulsions that depend on the interparticle interactions hold promise for building template materials. A novel coumarin-grafting alginate-based amphiphilic telechelic macromolecules (ATMs) undergoing photo-dimerization enhanced particle-particle interactions and changed the self-assembly behavior in solutions. The influence of self-organization of polymeric particles on the droplet size, microtopography, interfacial adsorption and viscoelasticity of Pickering emulsions were further determined by multi-scale methodology. Results showed that stronger attractive interparticle interactions of ATMs (post-UV) endowed Pickering emulsion with small droplet size (16.8 μm), low interfacial tension (9.31 mN/m), thick interfacial film, high interfacial viscoelasticity and adsorption mass, and well stability. The high yield stress, outstanding extrudability (n < 1), high structure maintainability, and well shape retention ability, makes them ideal inks for direct 3D printing without any additions. The ATMs provides an increased capacity to produce stable Pickering emulsions with tailoring their interfacial performances and, providing a platform for fabricating and developing alginate-based Pickering emulsion-templated materials.

摘要

依赖于粒子间相互作用的功能性 Pickering 乳液有望成为模板材料。一种新型的香豆素接枝海藻酸钠两亲性遥爪大分子(ATMs)经历光二聚化增强了粒子间的相互作用,并改变了溶液中的自组装行为。通过多尺度方法进一步确定了聚合物粒子的自组织对 Pickering 乳液液滴尺寸、微观形貌、界面吸附和粘弹性的影响。结果表明,ATMs(后 UV)更强的粒子间吸引力赋予 Pickering 乳液更小的液滴尺寸(16.8 μm)、更低的界面张力(9.31 mN/m)、更厚的界面膜、更高的界面粘弹性和吸附质量以及更好的稳定性。高屈服应力、出色的可挤出性(n<1)、高结构保持性和良好的形状保持能力,使它们成为理想的 3D 打印油墨,无需任何添加剂。ATMs 提供了一种增加能力,可以生产具有可调节界面性能的稳定 Pickering 乳液,并为制造和开发基于海藻酸盐的 Pickering 乳液模板材料提供了一个平台。

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