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将不相容的物质结合在一起以达到更好的效果:超亲水性水凝胶中疏水性有效载荷的结合。

Marrying the incompatible for better: Incorporation of hydrophobic payloads in superhydrophilic hydrogels.

机构信息

Department of Materials Science and Engineering, School of Molecular Science and Engineering, Vidyasirimedhi Institute of Science and Technology (VISTEC), Rayong 21210, Thailand.

出版信息

J Colloid Interface Sci. 2022 Sep 15;622:75-86. doi: 10.1016/j.jcis.2022.04.029. Epub 2022 Apr 9.

Abstract

HYPOTHESIS

The entrapment of lyophobic in superhydrophilic hydrogels is challenging because of the intrinsic incompatibility between hydrophobic and hydrophilic molecules. To achieve such entrapment without affecting the hydrogel's formation, the electrospinning of nanodroplets or nanoparticles with a water-soluble polymer could reduce the incompatibility through the reduction of interfacial tension and the formation of a barrier film preventing coalescence or aggregation.

EXPERIMENTS

Nanodroplets or nanoparticles dispersion are electrospun in the presence of a hydrophilic polymer in hydrogel precursors. The dissolution of the hydrophilic nanofibers during electrospinning allows a redispersion of emulsion droplets and nanoparticles in the hydrogel's matrix.

FINDINGS

Superhydrophilic hydrogels with well-distributed hydrophobic nanodroplets or nanoparticles are obtained without detrimentally imparting the viscosity of hydrogel's precursors and the mechanical properties of the hydrogels. Compared with the incorporation of droplets without electrospinning, higher loadings of hydrophobic payload are achieved without premature leakage. This concept can be used to entrap hydrophobic agrochemicals, drugs, or antibacterial agents in simple hydrogels formulation.

摘要

假设

由于疏水和亲水分子之间固有的不兼容性,将疏水性物质困在超亲水水凝胶中具有挑战性。为了在不影响水凝胶形成的情况下实现这种困缚,可以通过降低界面张力和形成阻止聚结或聚集的阻挡膜来减少不兼容性,用水溶性聚合物对纳米液滴或纳米颗粒进行静电纺丝。

实验

在水凝胶前体中存在亲水聚合物的情况下对纳米液滴或纳米颗粒分散体进行静电纺丝。在静电纺丝过程中,亲水性纳米纤维的溶解允许乳液液滴和纳米颗粒在水凝胶基质中再分散。

发现

在不损害水凝胶前体的粘度和水凝胶机械性能的情况下,获得了具有良好分布的疏水性纳米液滴或纳米颗粒的超亲水水凝胶。与没有静电纺丝的液滴掺入相比,可实现更高的疏水性有效载荷负载,而不会出现过早泄漏。该概念可用于简单水凝胶配方中包埋疏水性农药、药物或抗菌剂。

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