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首页> 外文期刊>Journal of physical chemistry letters >Dynamic Rotating Liquid Marble for Directional and Enhanced Mass Transportation in Three-Dimensional Microliter Droplets
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Dynamic Rotating Liquid Marble for Directional and Enhanced Mass Transportation in Three-Dimensional Microliter Droplets

机译:动态旋转液体大理石,用于定向和增强的三维微升液滴的质量运输

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摘要

The ability of an artificial microdroplet to mimic the rotational behaviors of living systems is crucial for dynamic mass transportation but remains challenging to date. Herein, we report dynamic microdroplet rotation using a liquid marble (RLM) and achieve precise control over mass transportation and distribution in a three-dimensional (3D) microdroplet. RLM rotates synchronously with an external magnetic field, creating circular hydrodynamic flow and an outward centrifugal force. Such spin-induced phenomena direct a spiral movement of entrapped molecules and accelerate their diffusion and homogenization in the entire liquid. Moreover, we demonstrate the rotation rate-controlled (between 0 and 1300 rpm) modulation of shell-catalyzed reaction kinetics from 0.13 to 0.62 min(-1). The directed acceleration of reactants toward a catalytically active shell surface is 3-fold faster than conventional stir bar-based convective flow. RLM as an efficient magnetohydrodynamics transducer will be valuable for dynamical control over mass transportation in microdroplet-based chemical, biological, and biomedical studies.
机译:人造微滴水模仿生活系统旋转行为的能力对于动态传输至关重要,但迄今为止仍然具有挑战性。在此,我们使用液体大理石(RLM)报告动态微滴电流旋转,并在三维(3D)微滴上的质量运输和分布上实现精确控制。 RLM与外部磁场同步旋转,产生圆形流体动力流和向外离心力。这种旋转诱导的现象引起捕获分子的螺旋运动,并在整个液体中加速它们的扩散和均质化。此外,我们证明了从0.13-0.62 min(-1)的壳催化的反应动力学的旋转率控制(0和1300rpm)调节。朝向催化活性壳表面的反应物的定向加速度比常规搅拌棒的对流流程快3倍。 RLM作为高效的磁力流体动力学传感器对于在基于微型技术,生物学和生物医学研究中对大规模运输的动态控制是有价值的。

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