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Self-organization in precipitation reactions far from the equilibrium

机译:沉淀反应中的自组织远离平衡

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摘要

Far from the thermodynamic equilibrium, many precipitation reactions create complex product structures with fascinating features caused by their unusual origins. Unlike the dissipative patterns in other self-organizing reactions, these features can be permanent, suggesting potential applications in materials science and engineering. We review four distinct classes of precipitation reactions, describe similarities and differences, and discuss related challenges for theoretical studies. These classes are hollow micro- and macrotubes in chemical gardens, polycrystalline silica carbonate aggregates (biomorphs), Liesegang bands, and propagating precipitation-dissolution fronts. In many cases, these systems show intricate structural hierarchies that span from the nanometer scale into the macroscopic world. We summarize recent experimental progress that often involves growth under tightly regulated conditions by means of wet stamping, holographic heating, and controlled electric, magnetic, or pH perturbations. In this research field, progress requires mechanistic insights that cannot be derived from experiments alone. We discuss how mesoscopic aspects of the product structures can be modeled by reaction-transport equations and suggest important targets for future studies that should also include materials features at the nanoscale.
机译:远离热力学平衡的地方,许多沉淀反应会产生复杂的产物结构,这些产物结构具有由其不寻常的起源引起的迷人特征。与其他自组织反应中的耗散模式不同,这些功能可以是永久性的,表明在材料科学和工程中的潜在应用。我们回顾了沉淀反应的四个不同类别,描述了相似性和差异性,并讨论了有关理论研究的挑战。这些类别是化学花园中的空心微管和大管,多晶碳酸硅石聚集体(生物体),Liesegang带和传播的沉淀-溶解前沿。在许多情况下,这些系统显示出从纳米尺度到宏观世界的复杂结构层次。我们总结了最近的实验进展,该进展通常涉及通过湿压模,全息加热以及受控的电,磁或pH扰动在严格调节的条件下进行生长。在这个研究领域,进步需要不能仅从实验中得出的机械见解。我们讨论了如何通过反应传输方程式对产品结构的介观方面进行建模,并提出了未来研究的重要目标,这些目标还应包括纳米级的材料特征。

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