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首页> 外文期刊>Colloid journal >Nucleation of water vapor in microcracks on the surface of beta-AgI aerosol particles: 1. The structure of nuclei
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Nucleation of water vapor in microcracks on the surface of beta-AgI aerosol particles: 1. The structure of nuclei

机译:β-AgI气溶胶颗粒表面微裂纹中水蒸气的成核:1.核的结构

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The precrystallization stage of nucleation of the condensed phase in wedge-shaped microcracks on the surface of beta-AgI crystal at 260 K is studied by the Monte Carlo method. The microcrack field has a strong polarizing effect on the nucleus inducing the electrostatic forces of repulsion of molecules inside the nucleus and their attraction to the surface of microcrack walls. The growth of the nucleus in the microcrack passes through a stage of compaction, which is absent for the nuclei growing on the ideal surface. Microcrack surfaces stimulate, on the one hand, the formation of multilayered structures already at the earlier stage of clusterization and, on the other hand, the decomposition of the nucleus into unbound clusters whose main elements are six-and four-membered cycles. The beta-AgI substrate shifts the equilibrium in small clusters from cubic to hexagonal symmetry. The analysis of the formation conditions of the known modifications of crystal and amorphous ice renders improbable the emergence of amorphous forms on the surface at the temperature studied; however, this allows us to consider the crystallization of nuclei to ice XI in the presence of microcracks as the probable event.
机译:利用蒙特卡洛方法研究了260 K条件下β-AgI晶体表面楔形微裂纹中凝结相的成核预结晶阶段。微裂纹场对核具有强烈的极化作用,诱导核内分子排斥的静电力及其对微裂纹壁表面的吸引。核在微裂纹中的生长经历了一个压实阶段,这是理想表面上生长的核所不具备的。一方面,微裂纹表面刺激了已经在聚类的早期阶段形成的多层结构,另一方面,刺激了原子核分解成未结合的簇,其主要元素为六元和四元循环。 β-AgI底物将小簇中的平衡从立方对称转变为六边形。对晶体和非晶态冰的已知变体的形成条件的分析使得在所研究的温度下不可能在表面上出现非晶态形式。但是,这使我们可以考虑在存在微裂纹的情况下将核结晶为冰XI的可能性。

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