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Self-assembly of cerium oxide nanostructures in ice molds

机译:冰模中氧化铈纳米结构的自组装

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The formation of nanorods driven by the physicochemical phenomena, during the freezing and after the aging of frozen ceria nanoparticle suspensions, is reported. During freezing of a dilute aqueous solution of CeO2 nanocrystals, some nuclei remain in solution while others are trapped inside micro- and nanometer voids formed within the growing ice front. Over time (2-3 weeks) the particles trapped within the nanometer-wide voids in the ice combine by an oriented attachment process to form ceria nanorods. The experimental observations are consistent with molecular dynamics simulations of particle aggregation in constrained environments. These observations suggest a possible strategy for the templated formation of nanostructures through self-assembly by exploiting natural phenomena, such as voids formed during freezing of water. This research suggests a very simple,, green chemical route to guide the formation of one- and three-dimensional self-assembled nanostructures.
机译:据报道,在冷冻二氧化铈纳米颗粒悬浮液的冷冻期间和老化之后,由理化现象驱动的纳米棒的形成。在冻结CeO2纳米晶体的稀水溶液的过程中,一些核保留在溶液中,而其他核则被困在正在生长的冰锋中形成的微米和纳米空隙内。随着时间的流逝(2-3周),被困在冰中纳米级空隙中的颗粒通过定向附着过程结合在一起,形成二氧化铈纳米棒。实验观察结果与受限环境中颗粒聚集的分子动力学模拟相一致。这些观察结果提出了通过利用自然现象,例如在水冻结过程中形成的空隙,通过自组装形成纳米结构的模板化的可能策略。这项研究提出了一种非常简单的绿色化学路线来指导一维和三维自组装纳米结构的形成。

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