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管状沉淀结构:非平衡条件下的材料合成。

Tubular precipitation structures: materials synthesis under non-equilibrium conditions.

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL 32306-4390, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2012 Jun 28;370(1969):2848-65. doi: 10.1098/rsta.2011.0378.

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 μm. 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.

摘要

无机沉淀反应已知可以自组织形成各种宏观结构,包括空心管。我们讨论了该领域的最新进展,重点是类似于“二氧化硅花园”的实验。这些反应涉及金属盐和硅酸钠溶液。从负载试剂的微球触发的反应可以产生内径低至 3 μm 的管。报告了不同的壁形态。对于泵驱动的注入,存在三种定性不同的生长阶段。在其中一个阶段,反应溶液的浮射流周围会组装管,这允许对管半径进行定量预测。其他主题包括弛豫振荡以及用固定的气泡和机械装置对管生长进行模板化。讨论了二氧化硅/Cu(OH)(2)和二氧化硅/Zn(OH)(2)/ZnO 管的情况下的管材料及其纳米到微结构。后一种情况显示出光催化活性和光致发光。

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