Chain length of bioinspired polyamines affects size and condensation of monodisperse silica particles

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Abstract

Polyamines play a major role in biosilicification reactions in diatoms and sponges. While the effects of polyamines on silicic acid oligomerization and precipitation are well known, the impact of polyamines chain length on silica particle growth is unclear. We studied the effects of polyamine chain length on silica particle growth and condensation in a known, simple, and salt-free biphasic reaction system; with tetraethyl orthosilicate as organic phase and polyamine dissolved in the aqueous phase. The particles at various growth stages were characterized by Cryo- Transmission Electron Microscopy, Scanning Electron Microscopy, Thermogravimetric Analysis, Zeta Potential, and solid-state NMR analysis. Polyamines were found co-localized within silica particles and the particle diameter increased with an increase in polyamine chain length, whereas silica condensation showed the opposite trend. Particle growth is proposed to progress via a coacervate intermediate while the final particles have a core shell structure with an amine-rich core and silica-rich shell. The results presented in this paper would of interest for researchers working in the field of bioinspired materials.

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Maddala, S. P., Liao, W. C., Joosten, R. R. M., Soleimani, M., Tuinier, R., Friedrich, H., & van Benthem, R. A. T. M. (2021). Chain length of bioinspired polyamines affects size and condensation of monodisperse silica particles. Communications Chemistry, 4(1). https://doi.org/10.1038/s42004-021-00595-y

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