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Thermostability analysis of line-tension-associated nucleation at a gas-liquid interface

机译:煤气液界面处的线紧张相关成核的热稳定性分析

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The influence of line tension on the thermostability of a droplet nucleated from an oversaturated vapor at the interface of the vapor and another immiscible liquid is investigated. Along with the condition of mechanical equilibrium, the notion of extremization of the reversible work of formation is considered to obtain the critical parameters related to heterogeneous nucleation. From the energetic formulation, the critical reversible work of formation is found to be greater than that of homogeneous nucleation for high value of the positive line tension. On the other hand, for high value of the negative line tension, the critical reversible work of formation becomes negative. Therefore, these thermodynamic instabilities under certain substrate wettability situations necessitate a free-energetics-based stability of the nucleated droplet, because the system energy is not minimized under these conditions. This thermostability is analogous to the transition-based stability proposed by Widom [B. Widom, J. Phys. Chem. 99, 2803 (1995)] in the case of partial wetting phenomena along with the positive line tension. The thermostability analysis limits the domain of the solution space of the present critical-value problem as the thermodynamic transformation in connection with homogeneous and workless nucleation is considered. Within the stability range of the geometry-based wetting parameters, three limiting modes of nucleation, i.e., total-dewetting-related homogeneous nucleation, and total-wetting-associated and total-submergence-associated workless nucleation scenarios, are identified. Either of the two related limiting wetting scenarios of workless nucleation, namely, total wetting and total submergence, is found to be favorable depending on the geometry-based wetting conditions. The line-tension-associated nucleation on a liquid surface can be differentiated from that on a rigid substrate, as in the former, the stability based on mechanical equilibrium and a typical case o
机译:研究了线张张力对从蒸汽界面处的过饱和蒸汽含量的液滴的热稳定性的影响。随着机械平衡的条件,认为可逆工作的极端化的概念被认为是获得与异质成核相关的关键参数。从充满活力的制定中,发现临界可逆工作是大于正线张力的高值的均匀成核的临界可逆工作。另一方面,对于负线张力的高值,形成的临界可逆工作变为负。因此,在某些基底润湿性情况下这些热力学稳定性需要基于核液滴的基于自由能的稳定性,因为在这些条件下,系统能量不会最小化。这种热稳定性类似于Widom提出的基于转变的稳定性[B. Widom,J. Phy。化学。 99,2803(1995)]在局部润湿现象以及正线张力的情况下。热稳定性分析限制了当前关键值问题的溶液空间的域,因为考虑了与均匀和无工成的成核相关的热力学变换。在基于几何的润湿参数的稳定范围内,确定了三种限制性成核模式,即总脱模相关的均匀成核和全润湿相关和全潜水相关无效的无效的无效核环境。无效核切割的两个相关限制润湿情景中的任何一个都发现,根据基于几何形状的润湿条件,发现有利于良好。在液体表面上的线张力相关的成核可以从刚性基板上的刚性基板上的稳定性,基于机械平衡和典型案例O的稳定性区分。

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