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首页> 外文期刊>Angewandte Chemie >Tuning the Colloidal Crystal Structure of Magnetic Particles by External Field
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Tuning the Colloidal Crystal Structure of Magnetic Particles by External Field

机译:通过外场调谐磁性粒子的胶体晶体结构

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Manipulation of the self-assembly of magnetic colloidal particles by an externally applied magnetic field paves a way toward developing novel stimuli responsive photonic structures. Using microradian X-ray scattering technique we have investigated the different crystal structures exhibited by self-assembly of core-shell magnetite/silica nanoparticles. An external magnetic field was employed to tune the colloidal crystallization. We find that the equilibrium structure in absence of the field is random hexagonal close-packed (RHCP) one. External field drives the self-assembly toward a body-centered tetragonal (BCT) structure. Our findings are in good agreement with simulation results on the assembly of these particles.
机译:外部施加的磁场对磁性胶体粒子自组装的操纵为发展新型刺激响应光子结构铺平了道路。使用微弧度X射线散射技术,我们研究了核壳磁铁矿/二氧化硅纳米粒子自组装所表现出的不同晶体结构。使用外部磁场来调节胶体结晶。我们发现,在没有场的情况下,平衡结构是随机六方密堆积(RHCP)的一种。外部磁场将自组装朝着以身体为中心的四边形(BCT)结构。我们的发现与这些粒子组装的模拟结果非常吻合。

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