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Low-dimensional nanoparticle clustering in polymer micelles and their transverse relaxivity rates

机译:高分子胶束中的低维纳米粒子团簇及其横向弛豫率

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摘要

One- or two-dimensional arrays of iron oxide nanoparticles were formed in colloidal assemblies of amphiphilic polymers. Electron tomography imaging revealed that nanoparticles are arranged into one-dimensional strings in magneto-micelles or two-dimensional sheets in magneto-core/shell assemblies. The distinct directional assembly behavior was attributed to the interparticle interaction relative to the nanoparticle-polymer interaction, which was modulated by varying the cosolvent used for the solution phase self-assembly. Magneto-core/shell assemblies with varying structural parameters were formed with a range of different sized as-synthesized nanoparticles. The transverse magnetic relaxivity rates (r_2) of a series of different assemblies were determined to examine the effect of nanoparticle arrangement on the magnetic relaxivity for their potential applications in MRI. The results indicated that the assembly structure of nanoparticles in polymer micelles significantly affects the r_2 of surrounding water, providing a way to control magnetic relaxivity.
机译:在两亲聚合物的胶体组件中形成一氧化铁纳米粒子的一维或二维阵列。电子断层扫描成像显示,纳米颗粒在磁胶束中排列成一维串,在磁芯/壳组件中排列成二维片。明显的定向组装行为归因于相对于纳米颗粒-聚合物相互作用的颗粒间相互作用,这通过改变用于溶液相自组装的助溶剂来调节。用一系列不同尺寸的合成纳米粒子形成具有不同结构参数的磁芯/壳组件。确定了一系列不同组件的横向磁弛豫率(r_2),以检查纳米颗粒排列对磁弛豫的影响,以供其在MRI中的潜在应用。结果表明,纳米粒子在聚合物胶束中的组装结构显着影响周围水的r_2,为控制磁弛豫性提供了一种途径。

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