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首页> 外文期刊>Journal of Colloid and Interface Science >Dielectrophoretic assembly of grain-boundary-free 2D colloidal single crystals
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Dielectrophoretic assembly of grain-boundary-free 2D colloidal single crystals

机译:无晶粒边界的二维胶体单晶的介电泳组装

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摘要

Dielectrophoresis (DEP) force-assisted assembly of a colloidal single photonic-crystal monolayer in a microfluidic chamber was demonstrated. Negative DEP force with a high-frequency AC electric field induced the compression of colloidal microspheres to form a colloidal crystal domain at the center of a hexapolar-shaped electrode. While typical assembly by monotonic DEP force forms multicrystalline domains containing crystal defects, repetitions of the DEP/relaxation cycle significantly facilitated crystal growth of 10 μm monodispersed polystyrene microspheres, allowing a grain-boundary-free single-crystal monolayer domain of ca. 200 μm in size. Microsphere size as well as size distribution affected the formation of the single-crystal domain. A simple method was used to immobilize the single-crystal domain on the glass substrate without losing its crystallinity.
机译:证明了在微流控室中胶体单光子晶体单层的介电电泳(DEP)力辅助组装。带有高频交流电场的负DEP力引起胶体微球的压缩,从而在六极形电极的中心形成胶体晶畴。虽然典型的单调DEP力组装会形成包含晶体缺陷的多晶域,但DEP /松弛周期的重复显着促进​​了10μm单分散聚苯乙烯微球的晶体生长,从而实现了无晶界的单晶单层结构域。尺寸为200μm。微球的大小以及大小分布会影响单晶域的形成。使用一种简单的方法将单晶畴固定在玻璃基板上,而不会失去其结晶度。

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