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首页> 外文期刊>Materials Chemistry Frontiers >Structural diversity in binary superlattices from Au and γ-Fe2O3 nanocrystals: towards fine tuning of dipolar interactions
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Structural diversity in binary superlattices from Au and γ-Fe2O3 nanocrystals: towards fine tuning of dipolar interactions

机译:在二元超晶格结构多样性盟和γ-Fe2O3纳米晶体:微调偶极相互作用

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摘要

Two cooperative and complementary components such as γ-Fe2O3/Au nanoparticles (NPs) are used to grow binary superlattices (BNSLs). The effects of different parameters including concentration ratio of colloidal solutions, effective size ratio of NPs, deposition temperature and type of solvent on the formation of BNSLs are discussed. A systematic study of the effect of these parameters is performed to determine the driving forces underlying the BNSL formation. We show that by using the same batch of particles, the control of the various parameters gives rise to a large diversity of crystalline structures. In addition, thanks to their long-range organization, the magnetic properties of γ-Fe2O3/Au NPs binary superlattices are studied by SQUID magnetometry and compared to those of pure γ-Fe2O3 NPs superlattices. The γ-Fe2O3 interparticle distance modulated by the insertion of Au NPs is shown to significantly impact their magnetic properties.
机译:两个合作互补的组件当γ-Fe2O3 / Au纳米颗粒(NPs)用于长二进制超晶格(BNSLs)。不同的参数包括浓度比胶体解决方案,有效的大小NPs比、沉积温度和类型的溶剂在BNSLs的形成进行了讨论。影响的系统研究执行参数来确定驾驶部队的BNSL形成。通过使用相同的批颗粒,产生一个控制的各种参数大的晶体结构的多样性。此外,由于他们的远程组织,磁性的γ-Fe2O3 /非盟NPs二进制超晶格进行了研究鱿鱼的磁力测定和比较纯γ-Fe2O3 NPs超晶格。颗粒间的距离由插入调制非盟NPs的显著影响磁性。

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