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Microfluidic-based fabrication, characterization and magnetic functionalization of microparticles with novel internal anisotropic structure

机译:具有新型各向异性结构的微粒的微流体制造,表征和磁官能化

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Easy fabrication and independent control of the internal and external morphologies of core-shell microparticles still remain challenging. Core-shell microparticle comprised of a previously unknown internal anisotropic structure and a spherical shell was fabricated by microfluidic-based emulsificaiton and photopolymerization. The interfacial and spatial 3D morphology of the anisotropic structure were observed by SEM and micro-CT respectively. Meanwhile, a series of layer-by-layer scans of the anisotropic structure were obtained via the micro-CT, which enhanced the detail characterization and analysis of micro materials. The formation mechanism of the internal anisotropic structure may be attributed to solution-directed diffusion caused by the semipermeable membrane structure and chemical potential difference between inside and outside of the semipermeable membrane-like polymerized shell. The morphology evolution of the anisotropic structure was influenced and controlled by adjusting reaction parameters including polymerization degree, polymerization speed, and solute concentration difference. The potential applications of these microparticles in microrheological characterization and image enhancement were also proposed by embedding magnetic nanoparticles in the inner core.
机译:核心壳微粒的内部和外部形态易于制造和独立控制仍然存在挑战性。由先前未知的内各各向异性结构和球形壳组成的核 - 壳微粒由微流体的乳化型和光聚合制备。通过SEM和Micro-CT观察各向异性结构的界面和空间3D形态。同时,通过微型CT获得各向异性结构的一系列逐层扫描,其增强了微观材料的细节表征和分析。内部各向异性结构的形成机制可归因于由半透膜结构和半透膜状聚合壳内外和外部之间的化学电位差异引起的溶液定向扩散。通过调节包括聚合度,聚合速度和溶质浓度差异的反应参数来影响各向异性结构的形态学化。还通过将磁性纳米颗粒嵌入内核中的磁性纳米颗粒来提出这些微粒在微流学表征和图像增强中的潜在应用。

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