非平衡态热力学
绝热过程
非绝热的
粒度
化学热力学
热力学
热力学系统
热力学平衡
物理
平衡热力学
统计物理学
吉布斯自由能
扩展不可逆热力学
量子
化学
量子力学
计算机科学
操作系统
作者
Emanuele Penocchio,Riccardo Rao,Massimiliano Esposito
摘要
Current formulations of nonequilibrium thermodynamics of open chemical reaction networks only consider chemostats as free-energy sources sustaining nonequilibrium behaviors. Here, we extend the theory to include incoherent light as a source of free energy. We do so by relying on a local equilibrium assumption to derive the chemical potential of photons relative to the system they interact with. This allows us to identify the thermodynamic potential and the thermodynamic forces driving light-reacting chemical systems out-of-equilibrium. We use this framework to treat two paradigmatic photochemical mechanisms describing light-induced unimolecular reactions-namely, the adiabatic and diabatic mechanisms-and highlight the different thermodynamics they lead to. Furthermore, using a thermodynamic coarse-graining procedure, we express our findings in terms of commonly measured experimental quantities, such as quantum yields.
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