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首页> 外文期刊>AIChE Journal >Engineering uniform nanocrystals: Mechanism of formation and self-assembly into bimetallic nanocrystal superlattices
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Engineering uniform nanocrystals: Mechanism of formation and self-assembly into bimetallic nanocrystal superlattices

机译:工程均一的纳米晶体:双金属纳米晶体超晶格的形成和自组装机理

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摘要

The preparation of metal nanocrystals (NCs) with precise and tunable size is of great interest for many applications. Following previous reports on the synthesis of monodisperse nickel, palladium, and platinum NCs, we here show that the narrow size distributions are the result of an optimized combination of surfactants that play a dynamic, synergistic role in stabilizing the particles at different stages (nucleation, growth) of their preparation. This dynamical process allows the temporal separation of nucleation and growth responsible for the narrow size distributions achievable with this heat-up method. Finally, the uniform NCs are exploited in the preparation of binary nanocrystals superlattices entirely based on metal components, with promising applicability in the fields of catalysis, sensing, and optics. (c) 2015 American Institute of Chemical Engineers AIChE J, 62: 392-398, 2016
机译:具有精确且可调大小的金属纳米晶体(NCs)的制备对于许多应用都非常感兴趣。根据先前有关单分散镍,钯和铂NC合成的报道,我们在此表明​​窄尺寸分布是表面活性剂优化组合的结果,这些表面活性剂在稳定颗粒处于不同阶段(成核,成长)。这种动力学过程使成核和生长的时间分离成为可能,这种成核和生长是这种加热方法可实现的窄尺寸分布的原因。最后,在完全基于金属成分的二元纳米晶体超晶格的制备中利用了均匀的NC,在催化,传感和光学领域具有广阔的应用前景。 (c)2015年美国化学工程师学会AIChE J,62:392-398,2016

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