Bioinspired Control of Calcium Phosphate Liesegang Patterns Using Anionic Polyelectrolytes.

Young Shin Cho, Miyoung Moon, Gábor Holló, István Lagzi, Sung Ho Yang

Journal: Langmuir : the ACS journal of surfaces and colloids 2022;38(8):2515-2524

PMID: 35148116

Abstract

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.

Address: 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.; Department of Physics, Budapest University of Technology and Economics, Budapest H-1111, Hungary.
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