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多组分晶体的螺旋生长:理论方面

Spiral growth of multicomponent crystals: theoretical aspects.

作者信息

Redkov Alexey

机构信息

Laboratory of Structural and Phase Transitions, Institute for Problems in Mechanical Engineering RAS, Saint-Petersburg, Russia.

出版信息

Front Chem. 2023 May 12;11:1189729. doi: 10.3389/fchem.2023.1189729. eCollection 2023.

Abstract

This paper presents recent advances in the theory of multicomponent crystal growth from gas or solution, focusing on the most common step-flow mechanisms: Burton-Cabrera-Frank, Chernov, and Gilmer-Ghez-Cabrera. Analytical expressions for the spiral crystal growth rate are presented, taking into account the properties of all species involved in the growth process. The paper also outlines theoretical approaches to consider these mechanisms in multicomponent systems, providing a foundation for future developments and exploration of previously unexplored effects. Some special cases are discussed, including the formation of nanoislands of pure components on the surface and their self-organization, the impact of applied mechanical stress on the growth rate, and the mechanisms of its influence on growth kinetics. The growth due to chemical reactions on the surface is also considered. Possible future directions for developing the theory are outlined. A brief overview of numerical approaches and software codes that are useful in theoretical studies of crystal growth is also given.

摘要

本文介绍了从气相或溶液中生长多组分晶体理论的最新进展,重点关注最常见的台阶流机制:伯顿 - 卡布雷拉 - 弗兰克机制、切尔诺夫机制和吉尔默 - 热兹 - 卡布雷拉机制。给出了螺旋晶体生长速率的解析表达式,同时考虑了生长过程中所有相关物种的特性。本文还概述了在多组分系统中考虑这些机制的理论方法,为未来的发展以及探索以前未探索的效应奠定了基础。讨论了一些特殊情况,包括表面上纯组分纳米岛的形成及其自组织、施加的机械应力对生长速率的影响以及其对生长动力学的影响机制。还考虑了表面化学反应引起的生长。概述了该理论未来可能的发展方向。还简要介绍了在晶体生长理论研究中有用的数值方法和软件代码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a651/10213516/e69f59e10e90/fchem-11-1189729-g001.jpg

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