论文标题

化学反应网络的电路理论

Circuit Theory for Chemical Reaction Networks

论文作者

Avanzini, Francesco, Freitas, Nahuel, Esposito, Massimiliano

论文摘要

我们为化学反应网络的电路理论奠定了基础。化学反应被分组为仅以其电流浓度特征为特征的化学模块,作为电子电路理论中的电流 - 电压(I-V)曲线的电器。这与Kirchhoff当前和电压定律的化学类似物结合在一起,为预测复杂化学网络的反应电流和耗散提供了强大的工具。该理论可以用来建立复杂网络的准确减少模型以及设计执行所需任务的网络。

We lay the foundation of a circuit theory for chemical reaction networks. Chemical reactions are grouped into chemical modules solely characterized by their current-concentration characteristic, as electrical devices by their current-voltage (I-V) curve in electronic circuit theory. This, combined with the chemical analog of Kirchhoff's current and voltage laws, provides a powerful tool to predict reaction currents and dissipation across complex chemical networks. The theory can serve to build accurate reduced models of complex networks as well as to design networks performing desired tasks.

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