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Composite polymer nanoarchitectures from a one-pot hydrothermal route

机译:一锅水热路线的复合聚合物纳米结构

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Exploitation of facile and versatile synthetic approaches to polymeric nanoarchitectures is of great interest in polymer science and engineering. Herein, we show that a simple hydrothermal route using double-solvents as reaction media has the ability to generate polymer nanospheres with tunable morphologies and components. In this one-pot approach, condensation polymerization of a resol precursor and radical polymerization of styrene are allowed to occur simultaneously under hydrothermal treatment. The synergistic self-organization of phenolformaldehyde crosslinked networks and polystyrene chains leads to the formation of well-defined hollow nanospheres with adjustable shell thickness or even Janus particles comprising a solid hemisphere and a hollow hemisphere. Furthermore, control over the composition of the hollow polymer nanospheres can be easily achieved by introducing a third monomer into the hydrothermal system.
机译:在聚合物科学和工程领域中,对聚合物纳米结构的简便,通用的合成方法的开发引起了极大的兴趣。在这里,我们表明,使用双溶剂作为反应介质的简单水热路线具有生成具有可调形态和组分的聚合物纳米球的能力。在这种一锅法中,在水热处理下,可同时发生甲阶酚醛前体的缩聚和苯乙烯的自由基聚合。酚醛交联网络和聚苯乙烯链的协同自组织导致形成具有可调节壳厚度甚至包括固体半球和中空半球的Janus颗粒的界限分明的中空纳米球。此外,通过将第三单体引入水热体系中可以容易地实现对中空聚合物纳米球的组成的控制。

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