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Organic-Dye-Coupled Magnetic Nanoparticles Encaged Inside Thermoresponsive PNIPAM Microcapsules

机译:热敏PNIPAM微胶囊内的有机染料偶联磁性纳米颗粒

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摘要

We present a new approach for the fabrication of thermoresponsive polymer microcapsules with mobile magnetic cores that undergo a volume phase-transition upon changing the temperature and are collected under an external magnetic field. We have prepared organic/inorganic composite microspheres with a well-defined core-shell structure that are composed of a crosslinked poly(N-isopropylacrylamide) (PNIPAM) shell and silica cores dotted centrally by magnetite nanoparticles. Since the infiltration of template-decomposed products is dependent on the permeability of PNIPAM shells triggered by changes of exterior temperature, the silica layer sandwiched between the magnetic core and the PNIPAM shell was quantitatively removed to generate PNIPAM microcapsules with mobile magnetic cores by treatment with aqueous NaOH solution. For development of the desired multifunctional microcapsules, modification of the unetched silica surface interiors can be realized by treatment with a silane coupling agent containing functional groups that can easily bind to catalysts, enzymes, or labeling molecules. Herein, fluorescein isothiocyanate (FITC), which is a common organic dye, is attached to the insides of the mobile magnetic cores to give PNIPAM microcapsules with FITC-labeled magnetic cores. In this system, it can be expected that an extension of the functionalization of the cavity properties of smart polymer microcapsules is to immobilize other target molecules onto the mobile cores in order to introduce other desired functions in the hollow cage.
机译:我们提出了一种制造具有移动磁芯的热敏聚合物微胶囊的新方法,该磁芯在改变温度时经历体积相变,并在外部磁场下收集。我们制备了具有明确定义的核-壳结构的有机/无机复合微球,该微球由交联的聚(N-异丙基丙烯酰胺)(PNIPAM)壳和由磁铁矿纳米粒子中心点缀的二氧化硅核组成。由于模板分解产物的渗透取决于外部温度变化触发的PNIPAM壳的渗透性,因此,通过水处理,定量地去除了夹在磁芯和PNIPAM壳之间的二氧化硅层,从而生成了带有可移动磁芯的PNIPAM微胶囊。 NaOH溶液。为了开发所需的多功能微胶囊,可以通过用含有可以容易地与催化剂,酶或标记分子结合的官能团的硅烷偶联剂处理来实现未蚀刻的二氧化硅表面内部的改性。在此,将常见的有机染料异硫氰酸荧光素(FITC)附着于移动磁芯的内部,从而得到带有FITC标记的磁芯的PNIPAM微胶囊。在该系统中,可以预期,智能聚合物微胶囊的腔性能的功能性扩展是将其他目标分子固定在可移动的核上,以便在中空笼中引入其他所需功能。

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