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A facile strategy to fabricate covalently linked raspberry-like nanocomposites with pH and thermo tunable structures

机译:具有pH和热可调结构的共价连接覆盆子样纳米复合材料的容易策略

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The preparations of covalently linked raspberry-like composite particles often suffer from uncontrolled particle shape and surface morphology, tedious reactions to introduce surface reactive groups, inefficient inter-particle reactions, and rigorous requirements for the formation of hierarchical structure. In this study, we developed a facile strategy to fabricate a kind of size-controlled, positively charged, alkoxysilanes-functionalized nanoparticles (Tsi-PDMAEMA-PSt NPs) via a combination of the ability of RAFT polymerization to design macromolecular architectures and the process of polymer self-assembly to produce well-defined NPs. Tsi-PDMAEMA-PSt NPs can effectively deposit on the outer surface of negatively charged silica microspheres and then form stable silica@polymer particles by the reaction between alkoxysilanes and surface silanols. The surface morphology, particle size, ζ -potential, structure stability as well as pH and thermo-responsiveness of the prepared composite particles were investigated. The results indicated that the prepared silica@polymer particles possessed unique raspberry-like surface structures with high stability and controllability. Moreover, the surface morphology and dispersion state of silica@polymer particles in water can respond to the change of pH and temperature. Consequently, considering the high simplicity and controllability, the design herein provided a promising route to prepare the long-stable raspberry-like composite microspheres with unique surface morphologies and stimuli-responsive properties for a wide range of possible applications.
机译:共价连接的覆盆子样复合颗粒的制剂经常患有不受控制的颗粒形状和表面形态,繁琐的反应,引入表面反应基团,低效的颗粒反应,以及对层次结构的形成的严格要求。在这项研究中,我们开发了一种容易策略,以通过筏聚合的能力与设计大分子架构和过程的组合来制造一种尺寸控制的,带正电荷的烷氧基硅烷氧硅烷硅烷氧硅烷酯化的纳米颗粒(TSI-PDMAEMA-PST NPS)聚合物自组装生产明确定义的NPS。 TSI-PDMAEMA-PST NPS可以有效地沉积在带负电的二氧化硅微球的外表面上,然后通过烷氧基硅烷和表面硅烷醇之间的反应形成稳定的二氧化硅@聚合物颗粒。研究了所制备的复合颗粒的表面形态,粒度,Ⅳ相,结构稳定性以及pH和热反应性。结果表明,制备的二氧化硅@聚合物颗粒具有具有高稳定性和可控性的独特覆盆子状表面结构。此外,水中二氧化硅的表面形态和分散状态可以响应pH和温度的变化。因此,考虑到高的简单性和可控性,本文的设计提供了一种有望的途径,以制备具有独特表面形态的长稳定覆盆子形态和刺激性能的途径,用于各种可能的应用。

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