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多功能液体大理石,用于稳定和输送反应性流体。

Multifunctional liquid marbles to stabilize and transport reactive fluids.

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Assam - 781039, India.

Centre for Nanotechnology, Indian Institute of Technology Guwahati, Assam - 781039, India.

出版信息

Soft Matter. 2021 May 19;17(19):5084-5095. doi: 10.1039/d1sm00310k.

Abstract

The self-organized transport and delivery of reactive liquids without spillage or loss of activity have been among the most daunting challenges for a long time. In this direction, we employ the concept of forming "liquid marbles" (LMs) to encapsulate and transport reactive hydrogen peroxide (H2O2) coated with functional microparticles. For example, peroxide marbles coated with a toner ink display remote-controlled magnetotactic movement inside a fluidic medium, thus overcoming the weaknesses associated with use of the bare droplets. Interestingly, in such a scenario, the coating of the marbles could also be removed or reformed by bringing the magnet towards or away from the marble. In this way, this process could ensure an on-demand remotely guided coating on the peroxide droplet or its removal. The liquid marbles carrying peroxide solutions are found to preserve the activity of the peroxide and exhibit a low evaporation rate compared with the uncoated peroxide fuel. Interestingly, oil droplets floating on the water could be recovered by introducing the armoured LMs into water under magnetic guidance. Further, the functionalized marbles could be employed as suicide bags for the on-demand delivery of reactive materials in targeted locations. Preliminary research on the antibacterial activity of such liquid marbles has proven to be effective in bacterial killing, which may create new avenues for emerging antibacterial and antibiofilm applications. Finally, such functionalized LMs have been employed to investigate the effects of surface charge on attachment of recombinant Escherichia coli bacteria expressing green fluorescent protein and monitoring the real-time imaging of bacterial death attached to the marble surface.

摘要

长期以来,无泄漏或活性损失的反应性液体的自组织输送一直是最艰巨的挑战之一。在这个方向上,我们采用形成“液体大理石”(LM)的概念来封装和输送涂覆有功能微颗粒的反应性过氧化氢(H2O2)。例如,涂覆有调色剂墨水的过氧化物大理石在流体内显示远程控制的磁动运动,从而克服了与使用裸露液滴相关的弱点。有趣的是,在这种情况下,通过将磁铁朝向或远离大理石,可以去除或重新形成大理石的涂层。通过这种方式,该过程可以确保按需远程引导过氧化物液滴的涂层或其去除。携带过氧化物溶液的液体大理石被发现保持过氧化物的活性,并且与未涂覆的过氧化物燃料相比具有低蒸发率。有趣的是,通过在磁引导下将装甲 LM 引入水中,可以回收浮在水面上的油滴。此外,功能化大理石可用作自杀袋,用于在目标位置按需输送反应性材料。这种液体大理石的抗菌活性的初步研究已被证明在杀菌方面有效,这可能为新兴的抗菌和抗生物膜应用开辟新途径。最后,已经使用这种功能化的 LM 来研究表面电荷对表达绿色荧光蛋白的重组大肠杆菌细菌附着的影响,并监测附着在大理石表面的细菌死亡的实时成像。

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