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具有可调润湿性的聚合物Janus粒子的合成,作为高效固体表面活性剂促进水相反应介质中的气体传递。

Synthesis of Polymer Janus Particles with Tunable Wettability Profiles as Potent Solid Surfactants to Promote Gas Delivery in Aqueous Reaction Media.

作者信息

Frank Bradley D, Perovic Milena, Djalali Saveh, Antonietti Markus, Oschatz Martin, Zeininger Lukas

机构信息

Department of Colloid Chemistry, Max Planck Institute of Colloids and Interfaces, Am Mühlenberg 1, 14476 Potsdam, Germany.

Faculty of Chemistry and Earth Sciences, Friedrich-Schiller-University of Jena, Philosophenweg 7a, 07743 Jena, Germany.

出版信息

ACS Appl Mater Interfaces. 2021 Jul 14;13(27):32510-32519. doi: 10.1021/acsami.1c07259. Epub 2021 Jun 29.

Abstract

Janus particles exhibit a strong tendency to directionally assemble and segregate to interfaces and thus offer advantages as colloidal analogues of molecular surfactants to improve the stability of multiphasic mixtures. Investigation and application of the unique adsorption properties require synthetic procedures that enable careful design and reliable control over the particles' asymmetric chemistry and wettability profiles with high morphological uniformity across a sample. Herein, we report on a novel one-step synthetic approach for the generation of amphiphilic polymer Janus particles with highly uniform and tunable wettability contrasts, which is based on using reconfigurable bi-phasic Janus emulsions as versatile particle scaffolds. Two phase-separated acrylate oils were used as the constituent droplet phases and transformed into their solidified Janus particle replicas via UV-induced radical polymerization. Using Janus emulsions as particle precursors offers the advantage that their internal droplet geometry can be fine-tuned by changing the force balance of surface tensions acting at the individual interfaces via surfactants or the volume ratio of the constituent phases. In addition, preassembled functional surfactants at the droplet interfaces can be locked in position upon polymerization, which enables both access toward postfunctionalization reaction schemes and the generation of highly uniform Janus particles with adjustable wettability profiles. Depending on the particle morphology and wettability, their interfacial position can be adjusted, which allows us to stabilize either air bubbles-in-water or water droplets-in-air (liquid marbles). Motivated by the interfacial activity of the particles and particularly the longevity of the resulting particle-stabilized air-in-water bubbles, we explored their ability to promote the delivery of oxygen inside a liquid-phase reaction medium, namely, for the heterogeneous Au-NP-mediated catalytic oxidation of d-glucose. We observed a 2.2-fold increase in the reaction rate attributed to the increase of the local concentration of oxygen around catalysts, thus showcasing a new strategy to overcome the limited solubility of gases in aqueous reaction media.

摘要

双面粒子表现出强烈的定向组装和聚集到界面的趋势,因此作为分子表面活性剂的胶体类似物具有优势,可提高多相混合物的稳定性。对其独特吸附特性的研究和应用需要合成方法,以便能够仔细设计并可靠控制粒子的不对称化学性质和润湿性分布,且在整个样品中具有高度的形态均匀性。在此,我们报告一种新颖的一步合成方法,用于生成具有高度均匀且可调润湿性对比的两亲性聚合物双面粒子,该方法基于使用可重构的双相双面乳液作为通用的粒子支架。两种相分离丙烯酸酯油用作组成液滴相,并通过紫外线诱导的自由基聚合转化为其固化的双面粒子复制品。使用双面乳液作为粒子前体的优势在于,通过表面活性剂改变作用于各个界面的表面张力的力平衡或组成相的体积比,可以微调其内部液滴几何形状。此外,液滴界面处预组装的功能性表面活性剂在聚合时可锁定在原位,这既能够进行后功能化反应方案,又能生成具有可调润湿性分布的高度均匀的双面粒子。根据粒子形态和润湿性,可以调整它们在界面的位置,这使我们能够稳定水包气或气包水(液滴弹)。受粒子界面活性尤其是所得粒子稳定的水包气气泡的寿命的启发,我们探索了它们促进液相反应介质中氧气输送的能力,即用于非均相金纳米粒子介导的d-葡萄糖催化氧化。我们观察到反应速率提高了2.2倍,这归因于催化剂周围氧气局部浓度的增加,从而展示了一种克服气体在水性反应介质中溶解度有限的新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae13/8283753/8b4e8296e0ac/am1c07259_0002.jpg

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