Mann Daniel, Voogt Stefanie, Keul Helmut, Möller Martin, Verheijen Marcel, Buskens Pascal
DWI-Leibniz Institute for Interactive Materials e.V., Forckenbeckstr. 50, 52056 Aachen, Germany.
Institute for Technical and Macromolecular Chemistry, RWTH Aachen University, Worringerweg 2, 52074 Aachen, Germany.
Polymers (Basel). 2017 Sep 28;9(10):475. doi: 10.3390/polym9100475.
Janus particles are of great research interest because of their reduced symmetry, which provides them with unique physical and chemical properties. Such particles can be prepared from spherical structures through colloidal assembly. Whilst colloidal assembly has the potential to be a low cost and scalable process, it typically lacks selectivity. As a consequence, it results in a complex mixture of particles of different architectures, which is tedious to purify. Very recently, we reported the colloidal synthesis of Au semishells, making use of polystyrene⁻polyphenylsiloxane Janus particles as an intermediate product ( , , 3898⁻3901). Here, we demonstrate that these Janus particles are realized through colloidal assembly of spherical glucose-functionalized polystyrene particles and an emulsion of phenyltrimethoxysilane in aqueous ammonia, followed by interfacial polycondensation to form the polyphenylsiloxane patch. Both the polystyrene spheres and the emulsion of Ph-TMS in aqueous ammonia are stabilized by a surfmer-a reactive surfactant. The colloidal assembly reported in this manuscript proceeds with an unexpected high selectivity, which makes this process exceptionally interesting for the synthesis of Janus particles. Furthermore, we report insights into the details of the mechanism of formation of these Janus particles, and apply those to adapt the synthesis conditions to produce polystyrene particles selectively decorated with multiple polyphenylsiloxane patches, e.g., raspberry particles.
由于其对称性降低,Janus粒子具有极大的研究价值,这赋予了它们独特的物理和化学性质。此类粒子可通过胶体组装由球形结构制备而成。虽然胶体组装有潜力成为一种低成本且可扩展的过程,但它通常缺乏选择性。因此,会产生不同结构粒子的复杂混合物,纯化起来很繁琐。最近,我们报道了利用聚苯乙烯⁻聚苯基硅氧烷Janus粒子作为中间产物进行金半壳的胶体合成(,,3898⁻3901)。在此,我们证明这些Janus粒子是通过球形葡萄糖功能化聚苯乙烯粒子与苯基三甲氧基硅烷在氨水中的乳液进行胶体组装,随后通过界面缩聚形成聚苯基硅氧烷补丁而实现的。聚苯乙烯球体和苯基三甲氧基硅烷在氨水中的乳液均由一种表面活性剂单体——一种反应性表面活性剂稳定。本手稿中报道的胶体组装以意想不到的高选择性进行,这使得该过程对于Janus粒子的合成格外有趣。此外,我们报告了对这些Janus粒子形成机制细节的见解,并将其应用于调整合成条件,以选择性地制备装饰有多个聚苯基硅氧烷补丁的聚苯乙烯粒子,例如树莓状粒子。