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利用双脲分子在乳液界面的超分子自组装制备无微塑料微胶囊

Microplastic-Free Microcapsules Using Supramolecular Self-Assembly of Bis-Urea Molecules at an Emulsion Interface.

作者信息

Bhutkar Siddhant Pravin, Millard Pierre-Eric, Preece Jon A, Zhang Zhibing

机构信息

School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, U.K.

BASF SE, Ludwigshafen Am Rhein 67056, Germany.

出版信息

Langmuir. 2024 Jul 23;40(29):14798-14810. doi: 10.1021/acs.langmuir.4c00541. Epub 2024 Jul 11.

Abstract

Encapsulation technology is well established for entrapping active ingredients within an outer shell for their protection and controlled release. However, many solutions employed industrially use nondegradable cross-linked synthetic polymers for shell formation. To curb rising microplastic pollution, regulatory policies are forcing industries to substitute the use of such intentionally added microplastics with environmentally friendly alternatives. This work demonstrates a one-pot process to make microplastic-free microcapsules using supramolecular self-assembly of bis-ureas. Molecular bis-urea species generated spontaneously self-assemble at the interface of an oil-in-water emulsion via hydrogen bonding to form a shell held together by noncovalent bonds. In addition, Laponite nanodiscs were introduced in the formulation to restrict aggregation observed during the self-assembly and to reduce the porosity of the shell, leading to well-dispersed microcapsules (mean Sauter diameter [3,2] ∼ 5 μm) with high encapsulation efficiency (∼99%). Accelerated release tests revealed an increase in characteristic release time of the active by more than an order of magnitude after encapsulation. The mechanical strength parameters of these capsules were comparable to some of the commercial, nondegradable melamine-formaldehyde microcapsules. With mild operating conditions in an aqueous environment, this technology has real potential to offer an industrially viable method for producing microplastic-free microcapsules.

摘要

包封技术已成熟,可将活性成分包裹在外壳内以实现保护和控释。然而,工业上采用的许多解决方案使用不可降解的交联合成聚合物来形成外壳。为了遏制日益严重的微塑料污染,监管政策迫使行业用环保替代品替代此类有意添加的微塑料的使用。这项工作展示了一种一锅法,利用双脲的超分子自组装来制备无微塑料的微胶囊。分子双脲物种通过氢键在水包油乳液的界面处自发自组装,形成由非共价键结合在一起的外壳。此外,在配方中引入了锂皂石纳米盘,以限制自组装过程中观察到的聚集,并降低外壳的孔隙率,从而得到分散良好的微胶囊(平均索特直径[3,2] ∼ 5 μm),封装效率高(∼99%)。加速释放试验表明封装后活性成分的特征释放时间增加了一个多数量级。这些胶囊的机械强度参数与一些商业上不可降解的三聚氰胺甲醛微胶囊相当。在水性环境中操作条件温和,该技术有潜力提供一种工业上可行的生产无微塑料微胶囊的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/933c/11270993/728db41c7078/la4c00541_0001.jpg

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