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Spontaneous formations of superlattices and supracrystals from various forms of Mn_3O_4 nanocrystals

机译:由各种形式的Mn_3O_4纳米晶体自发形成超晶格和超晶体

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In this work, we demonstrate a one-step approach for synthesis and construction of self-assembled superlattices (SLs) or supracrystals (SCs) using Mn_3O_4 nanocrystal building blocks. The Mn_3O_4 crystals have been prepared from simple starting chemicals; only oleylamine and manganese acetate are involved in the synthesis. Surprisingly, shape-controlled Mn_3O_4 nanocrystals (e.g., spheres, cubes, plates, or rice) have been obtained by just tuning precursor concentration, temperature, and reaction time. A process scheme has been devised as a guide for morphological control. Furthermore, due to surface modification with oleylamine molecules and the presence of strong interactive forces (such as dipole-dipole and van der Waals interactions) among the Mn_3O_4 nanocrystals, stringent requirements for formation of SLs and SCs have been relaxed in terms of shape uniformity and size monodispersity. The self-organization of nanocrystals is a fast spontaneous process requiring no additional postgrowth treatments. The projected domain size of SCs in the range of several tens to hundreds of square micrometers has been achieved in the solution phase. Apart from the metal oxides, we also extend this synthesis-cum-assembly route to metal sulfides. Our preliminary results on synthesis and self-assembly of ZnS nanocrystals are also presented.
机译:在这项工作中,我们演示了使用Mn_3O_4纳米晶体构建块合成和构建自组装超晶格(SLs)或超晶体(SCs)的一步法。 Mn_3O_4晶体是由简单的起始化学物质制备的。合成中仅涉及油胺和乙酸锰。令人惊讶地,仅通过调节前体浓度,温度和反应时间就获得了形状受控的Mn_3O_4纳米晶体(例如,球体,立方体,板或大米)。已经设计了工艺方案作为形态控制的指南。此外,由于用油胺分子进行了表面改性,并且在Mn_3O_4纳米晶体之间存在强相互作用力(例如偶极-偶极和范德华相互作用),因此就形状均匀性和形状稳定性而言,对SL和SC形成的严格要求得到了放松。尺寸单分散性。纳米晶体的自组织是一个快速的自发过程,不需要额外的后生长处理。在解决方案阶段,SC的预计域大小在数十到数百平方微米的范围内。除金属氧化物外,我们还将这种合成兼组装路线扩展至金属硫化物。还介绍了我们关于ZnS纳米晶体的合成和自组装的初步结果。

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