Department of Chemistry Education, Korea National University of Education (KNUE), Chungbuk 28173, Republic of Korea.
MTA-BME Condensed Matter Physics Research Group, Budapest University of Technology and Economics, Budapest H-1111, Hungary.
Langmuir. 2022 Mar 1;38(8):2515-2524. doi: 10.1021/acs.langmuir.1c02980. Epub 2022 Feb 11.
The Liesegang phenomenon is a spontaneous pattern formation, which is a periodic distribution of the precipitate discovered in diffusion-limited systems. Over the past century, it has been experimentally attempted to control the periodicity of patterns and structures of precipitates by varying the concentration of the hydrogel or electrolytes, adding organic or inorganic impurities, and applying an electric or pH field. In this work, the periodic patterns of calcium phosphate were manipulated with an anionic macromolecular additive inspired by bone mineralization in which various noncollagenous proteins are involved in the formation of a polymer-induced liquid precursor. The periodic patterns were systematically controlled by adjusting the amount of poly(acrylic acid), and they were numerically simulated by adjusting the threshold concentration of nucleation. The change of the pattern is explained by improved stability and directional diffusion of the intermediate.
丽沙格( Liesegang )现象是一种自发的图案形成,它是在扩散限制系统中发现的沉淀的周期性分布。在过去的一个世纪中,人们通过改变水凝胶或电解质的浓度、添加有机或无机杂质以及施加电场或 pH 场来尝试控制沉淀的周期性图案和结构。在这项工作中,受骨矿化过程中涉及各种非胶原蛋白的聚合物诱导液相前体形成的启发,使用阴离子大分子添加剂来操纵磷酸钙的周期性图案。通过调整聚丙烯酸的用量来系统地控制周期性图案,并通过调整成核的阈值浓度进行数值模拟。通过改进中间物的稳定性和定向扩散来解释图案的变化。