首页> 外文期刊>Journal of Colloid and Interface Science >A pickering emulsion stabilized by chlorella microalgae as an eco-friendly extrusion-based 3D printing ink processable under ambient conditions
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A pickering emulsion stabilized by chlorella microalgae as an eco-friendly extrusion-based 3D printing ink processable under ambient conditions

机译:由小球藻微藻稳定的皮克林乳液作为环保型挤出的3D印刷油墨在环境条件下加工

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Three-dimensional (3D) printing technology is actively utilized in various industrial fields because it facilitates effective and customizable fabrication of complex structures. An important processing route for 3D printing is the extrusion of inks in the form of colloidal suspensions or emulsions, which has recently attracted considerable attention because it allows for selection of a wide range of printing materials and is operable under ambient processing conditions. Herein, we investigate the 3D printability of complex fluids containing chlorella microalgae as an eco-friendly material for 3D printing. Two possible ink types are considered: aqueous chlorella suspensions and emulsions of oil and water mixtures. While the aqueous chlorella suspensions at high particle loading display the 3D-printable rheological properties such as high yield stress and good shape retention, the final structures after extruding and drying the suspensions under ambient conditions show a significant number of macroscopic defects, limiting their practical application. In contrast, the 3D structures produced from the oil-in-water Pickering emulsions stabilized by chlorella microalgae, which are amphiphilic and active at the oil-water interface, show significantly reduced defect formation. Addition of a fast-evaporable oil phase, hexane, is crucial in the mechanisms of enhanced cementation between the individual microalgae via increased inter-particle packing, capillary attraction, and hydrophobic interaction. Furthermore, addition of solid paraffin wax, which is crystalline but well-soluble in the hydrocarbon oil phase under ambient conditions, completely eliminates the undesirable defect formation via enhanced inter-particle binding, while maintaining the overall rheological properties of the emulsion. The optimal formulation of the Pickering emulsion is finally employed to produce a 3D scaffold of satisfactory structural integrity, suggesting that the chlorella-based ink, in the form of an emulsion, has potential as an eco-friendly 3D printing ink processable under ambient conditions. (C) 2020 Elsevier Inc. All rights reserved.
机译:三维(3D)打印技术在各个工业领域得到了积极的应用,因为它有助于复杂结构的有效和可定制制造。3D打印的一个重要处理途径是以胶体悬浮液或乳液的形式挤出油墨,最近引起了相当大的关注,因为它允许选择多种打印材料,并且可以在环境处理条件下操作。在此,我们研究了含有小球藻的复杂液体作为一种环保3D打印材料的3D打印适性。考虑了两种可能的油墨类型:小球藻水悬浮液和油水混合物乳液。虽然高颗粒负载下的小球藻水悬浮液显示出3D可打印的流变特性,例如高屈服应力和良好的形状保持性,但在环境条件下挤压和干燥悬浮液后的最终结构显示出大量宏观缺陷,限制了其实际应用。相比之下,由小球藻稳定的水包油Pickering乳液产生的3D结构显示出明显减少的缺陷形成。小球藻是两亲性的,在油水界面上具有活性。添加快速蒸发的油相己烷,通过增加颗粒间堆积、毛细管吸引和疏水作用,在增强单个微藻之间胶结的机制中至关重要。此外,添加固体石蜡(在环境条件下结晶但在碳氢油相中溶解良好)可通过增强颗粒间结合完全消除不良缺陷的形成,同时保持乳液的整体流变特性。皮克林乳液的最佳配方最终被用于生产具有令人满意的结构完整性的3D支架,这表明以乳液形式存在的小球藻基油墨具有作为环境条件下可加工的环保3D油墨的潜力。(C) 2020爱思唯尔公司版权所有。

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