论文标题

扩散介导的表面现象的范式移动

Paradigm shift in diffusion-mediated surface phenomena

论文作者

Grebenkov, Denis S.

论文摘要

扩散介导的表面现象对人类的生活和工业至关重要,例如,从肺肺泡表面捕获氧气到异质性催化,基因调节,膜渗透和过滤过程。它们通过混合边界条件的扩散方程的当前描述仅限于无限或恒定反应性的简单表面反应。在这封信中,我们根据局部时间的概念提出了一种概率方法,以研究反应表面附近扩散粒子的复杂动力学。在停止条件方面,我们以统一的方式进行了表面粒子的相互作用,例如,传播器,生存概率,第一通道时间分布和反应速率等主要扩散反应特征。这种一般的形式主义使我们能够描述新的表面反应机制,例如,根据与散射粒子的相遇数量,可以对催化剂愚蠢或膜降解的影响进行建模。培养基与表面反应性的几何结构的分离为扩散介导的表面现象的建模,优化和控制提供了深远的角度。

Diffusion-mediated surface phenomena are crucial for human life and industry, with examples ranging from oxygen capture by lung alveolar surface to heterogeneous catalysis, gene regulation, membrane permeation and filtration processes. Their current description via diffusion equations with mixed boundary conditions is limited to simple surface reactions with infinite or constant reactivity. In this letter, we propose a probabilistic approach based on the concept of boundary local time to investigate the intricate dynamics of diffusing particles near a reactive surface. Reformulating surface-particle interactions in terms of stopping conditions, we obtain in a unified way major diffusion-reaction characteristics such as the propagator, the survival probability, the first-passage time distribution, and the reaction rate. This general formalism allows us to describe new surface reaction mechanisms such as for instance surface reactivity depending on the number of encounters with the diffusing particle that can model the effects of catalyst fooling or membrane degradation. The disentanglement of the geometric structure of the medium from surface reactivity opens far-reaching perspectives for modeling, optimization and control of diffusion-mediated surface phenomena.

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