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pH/temperature dual stimuli-responsive microcapsules with interpenetrating polymer network structure

机译:具有互穿聚合物网络结构的pH /温度双刺激响应微胶囊

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The microcapsules with interpenetrating polymer network (IPN) structure based on crosslinked poly (N-isopropylacrylamide) (PNIPAM) and crosslinked poly (acrylic acid) (PAA) were fabricated in a three-step process. Firstly, silica/PNIPAM core/shell composite particles were synthesized by thermo-initiated seed precipitation polymerization using 3-(trimethoxysilyl)propyl methacrylate modified silica colloidal particles as seeds and N-isopropylacrylamide and N,N′-methylenebisacrylamide (MBA) as monomer and crosslinker, respectively. Secondly, PAA network was incorporated into the shell of the composite particles by redox-initiated polymerization of acrylic acid and MBA entrapped in the PNIPAM network. Finally, the silica core of the composite particles was removed using hydrofluoric acid under certain condition to produce the microcapsules. The chemical compositions, their mass ratio, and particle sizes of the particles formed in each step were determined by Fourier transformation infrared spectroscopy, thermogravimetry, and dynamic laser light scattering (DLLS), respectively. The IPN structure of the microcapsules was identified by transmission electron microscopy (TEM) using uranyl acetate staining method, and their hollow structure was evidenced by TEM and scanning electron microscopy. Their temperature- or pH-dependent hydrodynamic diameters were measured by DLLS, and the results showed that the microcapules had both pH- and temperature-responsive properties, and the temperature-responsive component and the pH-responsive component inside the microcapsule shell had little interference with each other.
机译:以三步法制备了基于交联聚(N-异丙基丙烯酰胺)(PNIPAM)和交联聚(丙烯酸)(PAA)的具有互穿聚合物网络(IPN)结构的微囊。首先,以甲基丙烯酸3-(三甲氧基甲硅烷基)丙酯改性的二氧化硅胶体粒子为种子,N-异丙基丙烯酰胺和N,N'-亚甲基双丙烯酰胺(MBA)为单体,通过热引发的种子沉淀聚合反应合成二氧化硅/ PNIPAM核/壳复合颗粒。交联剂。其次,PAA网络通过氧化还原引发的PNIPAM网络中的丙烯酸和MBA的聚合反应而被引入复合颗粒的壳中。最后,在一定条件下用氢氟酸除去复合颗粒的二氧化硅核,以制备微胶囊。在每个步骤中形成的颗粒的化学组成,它们的质量比和粒径分别通过傅立叶变换红外光谱法,热重分析法和动态激光散射(DLLS)确定。微胶囊的IPN结构通过乙酸铀酰染色的透射电子显微镜(TEM)鉴定,并且其中空结构通过TEM和扫描电子显微镜证明。用DLLS测量了它们依赖温度或pH的流体力学直径,结果表明微囊同时具有pH和温度响应特性,并且微囊壳内部的温度响应成分和pH响应成分几乎没有干扰。彼此。

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