Tretiakov Konstantin V, Hyżorek Krzysztof
Institute of Molecular Physics, Polish Academy of Sciences, M. Smoluchowskiego 17, 60-179 Poznań, Poland.
Faculty of Technology, University of Kalisz, Nowy Świat 4, 62-800 Kalisz, Poland.
Materials (Basel). 2024 Oct 10;17(20):4955. doi: 10.3390/ma17204955.
Control of thermal transport in colloidal crystals plays an important role in modern technologies. A deeper understanding of the governing heat transport processes in various systems, such as polydisperse colloidal crystals, is required. This study shows how strongly the particle size polydispersity of a model colloidal crystal influences the thermal conductivity. The thermal conductivity of model colloidal crystals has been calculated using molecular dynamics simulations. The model crystals created by particles interacting through Yukawa (screened-Coulomb) interaction are assumed to have a face-centered cubic structure. The influence of the Debye screening length, contact potential, and particle size polydispersity on the thermal conductivity of Yukawa crystals was investigated. It was found that an increase in particle size polydispersity causes a strong-almost fivefold-decrease in the thermal conductivity of Yukawa crystals. In addition, the obtained results showed that the effect of the particle size polydispersity on reducing the thermal conductivity of Yukawa crystals is stronger than changes in values of the Debye screening length or the contact potential.
胶体晶体中热输运的控制在现代技术中起着重要作用。需要更深入地了解各种系统(如多分散胶体晶体)中主导的热输运过程。本研究表明模型胶体晶体的粒径多分散性对热导率的影响程度。已使用分子动力学模拟计算了模型胶体晶体的热导率。假设通过 Yukawa(屏蔽库仑)相互作用的粒子所形成的模型晶体具有面心立方结构。研究了德拜屏蔽长度、接触势和粒径多分散性对 Yukawa 晶体热导率的影响。结果发现,粒径多分散性的增加会导致 Yukawa 晶体的热导率大幅下降,几乎降低五倍。此外,所得结果表明,粒径多分散性对降低 Yukawa 晶体热导率的影响比德拜屏蔽长度或接触势值的变化更强。