化学物理
体积分数
格子(音乐)
惰性
分散性
反应速率常数
反应速率
材料科学
化学反应
扩散
热力学
晶格常数
格点模型(金融)
聚合物
化学
物理
动力学
高分子化学
经典力学
催化作用
有机化学
光学
声学
衍射
复合材料
作者
Jeremy D. Schmit,Ercan Kamber,Jané Kondev
标识
DOI:10.1103/physrevlett.102.218302
摘要
We study the effect of confinement on diffusion-limited bimolecular reactions within a lattice model where a small number of reactants diffuse among a much larger number of inert particles. When the number of inert particles is held constant, the rate of the reaction is slow for small reaction volumes due to limited mobility from crowding and for large reaction volumes due to the reduced concentration of the reactants. The reaction rate proceeds fastest at an intermediate confinement corresponding to a volume fraction near 50%. We generalize the model to off-lattice systems with hydrodynamic coupling and predict that the optimal reaction rate for monodisperse colloidal systems occurs when the volume fraction is approximately 19%. Finally, we discuss the implications of our model for bimolecular reactions inside cells and the dynamics of confined polymers.
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