Open Questions on Nonequilibrium Thermodynamics of Chemical Reaction Networks
arXiv:2007.00719 · doi:10.1038/s42004-020-00344-7
Abstract
Chemical reaction networks (CRNs) are prototypical complex systems because reactions are nonlinear and connected in intricate ways, and they are also essential to understand living systems. Here, I discuss how recent developments in nonequilibrium thermodynamics provide new insight on how CRNs process energy and perform sophisticated tasks, and describe open challenges in the field.
References in corpus (1)
Cited by in corpus (7)
- Circuit Theory for Chemical Reaction Networks
- Methods and Conversations in (Post)Modern Thermodynamics
- Hyperaccurate bounds in discrete-state Markovian systems
- Nonequilibrium fluctuations of chemical reaction networks at criticality: The Schlögl model as paradigmatic case
- Deficiency, Kinetic Invertibility, and Catalysis in Stochastic Chemical Reaction Networks
- What is a chemostat? Insights from hybrid dynamics and stochastic thermodynamics
- Modern Perspectives on Near-Equilibrium Analysis of Turing Systems