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Pulse-density modulation control of chemical oscillation far from equilibrium in a droplet open-reactor system

机译:液滴开放式反应器系统中远离平衡的化学振荡的脉冲密度调制控制

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The design, construction and control of artificial self-organized systems modelled on dynamical behaviours of living systems are important issues in biologically inspired engineering. Such systems are usually based on complex reaction dynamics far from equilibrium; therefore, the control of non-equilibrium conditions is required. Here we report a droplet open-reactor system, based on droplet fusion and fission, that achieves dynamical control over chemical fluxes into/out of the reactor for chemical reactions far from equilibrium. We mathematically reveal that the control mechanism is formulated as pulse-density modulation control of the fusion–fission timing. We produce the droplet open-reactor system using microfluidic technologies and then perform external control and autonomous feedback control over autocatalytic chemical oscillation reactions far from equilibrium. We believe that this system will be valuable for the dynamical control over self-organized phenomena far from equilibrium in chemical and biomedical studies.
机译:以生命系统的动态行为为模型的人工自组织系统的设计,构建和控制,是受到生物启发的工程中的重要问题。这样的系统通常基于远离平衡的复杂反应动力学。因此,需要控制非平衡条件。在这里,我们报告了基于液滴熔化和裂变的液滴开放反应器系统,该系统实现了对进出反应器的化学通量的动态控制,从而实现了远未达到平衡的化学反应。我们从数学上揭示了该控制机制被表述为聚变裂变时间的脉冲密度调制控制。我们使用微流控技术生产液滴开放反应器系统,然后对远离平衡的自催化化学振荡反应进行外部控制和自主反馈控制。我们相信,该系统对于动态控制自组织现象,在化学和生物医学研究中远远不能达到平衡,将具有重要意义。

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