Institute for Molecules and Materials, Radboud University, Heyendaalseweg 135, 6525, AJ, Nijmegen, The Netherlands.
Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, MA, 02138, USA.
Chemistry. 2020 Feb 3;26(7):1676-1682. doi: 10.1002/chem.201904725. Epub 2020 Jan 22.
Current efforts to design functional molecular systems have overlooked the importance of coupling out-of-equilibrium behaviour with changes in the environment. Here, the authors use an oscillating reaction network and demonstrate that the application of environmental forcing, in the form of periodic changes in temperature and in the inflow of the concentration of one of the network components, removes the dependency of the periodicity of this network on temperature or flow rates and enforces a stable periodicity across a wide range of conditions. Coupling a system to a dynamic environment can thus be used as a simple tool to regulate the output of a network. In addition, the authors show that coupling can also induce an increase in behavioural complexity to include quasi-periodic oscillations.
目前设计功能分子系统的努力忽略了将非平衡行为与环境变化相结合的重要性。在这里,作者使用了一个振荡反应网络,并证明了环境强制作用(以温度周期性变化和网络组件之一浓度的流入形式)的应用消除了该网络的周期性对温度或流速的依赖性,并在广泛的条件下强制实现了稳定的周期性。因此,将系统与动态环境耦合可以用作调节网络输出的简单工具。此外,作者还表明,耦合还可以诱导行为复杂性的增加,包括准周期振荡。