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Temperature Dependence in Heterogeneous Nucleation with Application to the Direct Determination of Cluster Energy on Nearly Molecular Scale

机译:非均相成核中的温度依赖性及其在分子尺度上直接确定簇能量的应用

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摘要

A re-examination of measurements of heterogeneous nucleation of water vapor on silver nanoparticles is presented here using a model-free framework that derives the energy of critical cluster formation directly from measurements of nucleation probability. Temperature dependence is correlated with cluster stabilization by the nanoparticle seed and previously found cases of unusual increasing nucleation onset saturation ratio with increasing temperature are explained. A necessary condition for the unusual positive temperature dependence is identified, namely that the critical cluster be more stable, on a per molecule basis, than the bulk liquid to exhibit the effect. Temperature dependence is next examined in the classical Fletcher model, modified here to make the energy of cluster formation explicit in the model.  The contact angle used in the Fletcher model is identified as the microscopic contact angle, which can be directly obtained from heterogeneous nucleation experimental data by a recently developed analysis method. Here an equivalent condition, increasing contact angle with temperature, is found necessary for occurrence of unusual temperature dependence. Our findings have immediate applications to atmospheric particle formation and nanoparticle detection in condensation particle counters (CPCs).
机译:本文使用无模型框架重新测试了银纳米颗粒上水蒸气非均相成核的测量结果,该模型直接从成核概率的测量中得出关键团簇形成的能量。温度依赖性与纳米粒子种子的团簇稳定相关,并且先前解释了随温度升高而异常增加的成核起始饱和率的情况。确定了异常正温度依赖性的必要条件,即,在每个分子的基础上,临界簇比散装液体更稳定,以发挥作用。接下来,在经典的Fletcher模型中检查温度依赖性,在此对其进行修改,以使模型中的团簇形成能量明确化。 Fletcher模型中使用的接触角被识别为微观接触角,可以通过最近开发的分析方法直接从异质成核实验数据中获得。在这里,发现出现温度异常的必要条件是随着温度增加接触角。我们的发现对凝结粒子计数器(CPC)中的大气粒子形成和纳米粒子检测具有直接的应用。

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