Tubular precipitation structures: Materials synthesis under non-equilibrium conditions

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Abstract

Inorganic precipitation reactions are known to self-organize a variety of macroscopic structures, including hollow tubes. We discuss recent advances in this field with an emphasis on experiments similar to 'silica gardens'. These reactions involve metal salts and sodium silicate solution. Reactions triggered from reagent-loaded microbeads can produce tubes with inner radii of down to 3 mm. Distinct wall morphologies are reported. For pump-driven injection, three qualitatively different growth regimes exist. In one of these regimes, tubes assemble around a buoyant jet of reactant solution, which allows the quantitative prediction of the tube radius. Additional topics include relaxation oscillations and the templating of tube growth with pinned gas bubble and mechanical devices. The tube materials and their nano-to-micro architectures are discussed for the cases of silica/Cu(OH)2 and silica/Zn(OH) 2/ZnO tubes. The latter case shows photocatalytic activity and photoluminescence. This journal is © 2012 The Royal Society.

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Makki, R., Roszol, L., Pagano, J. J., & Steinbock, O. (2012). Tubular precipitation structures: Materials synthesis under non-equilibrium conditions. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 370(1969), 2848–2865. https://doi.org/10.1098/rsta.2011.0378

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