首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Dual-colour generation from layered colloidal photonic crystals harnessing 'core hatching' in double emulsions
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Dual-colour generation from layered colloidal photonic crystals harnessing 'core hatching' in double emulsions

机译:从层状胶体光子晶体中使用双重乳液中的“核孵化”的双色产生

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Colloidal photonic crystals (CPCs), which possess intrinsic colourization characteristics due to their internal periodic structure, have been extensively exploited for various optical applications. However, conventional droplet-based synthesis of CPCs has shown simple structure and mono-colour generating properties since they generally require a protective shell as the outermost confining layer, and the lattice spacing inside the CPCs is invariantly determined, which hinders further tunability for structural and optically responsive properties. To enhance the tunability for structural and optically responsive properties of CPCs, here, we present a means to induce a spontaneous core-hatching process of selectively removing the CPC-encapsulating oil layer in double emulsion droplets by harnessing interfacial instability. By virtue of the reinforced interconnectivity between colloidal polyvinylpyrrolidone (PVP)-decorated polystyrene (PS) nanoparticles, isolated CPCs can retain their structural integrity even without a protective outer shell. As a result, the hatched CPCs can be further re-ordered into a core-shell-like structure having dual internal spacings and dual-colour generation properties. PVP chains decorated on the PS nanoparticles dictate the lattice spacing not only through solvent swelling but also by imparting structural stability via formation of hydrogen bonds. Furthermore, the degree of hatching of CPCs can be modulated to either core-shell-like CPCs (complete hatching) or Janus-like CPCs (partial hatching). Therefore, the work presented here offers a new approach to create uniquely structured and multicoloured CPCs with stimulus responsiveness while fully utilizing the advantages of the double emulsion templating method.
机译:具有由于其内部周期性结构具有本质上的光子晶体(CPC),其具有广泛利用了各种光学应用的内在色谱结构。然而,CPC的常规基于液滴合成已经示出了简单的结构和单彩色产生特性,因为它们通常需要保护壳作为最外层的限制层,并且CPC内部的晶格间距不变地确定,其妨碍了结构和结构的进一步可调性光学响应性。为了增强CPC的结构和光学响应性的可调性,在这里,我们提出了一种通过利用界面不稳定性选择性地在双乳液液滴中选择性地除去CPC封装油层的自发核心阴影过程的装置。借助于胶体聚乙烯吡咯烷酮(PVP) - 研磨的聚苯乙烯(PS)纳米颗粒之间的增强互连,分离的CPC即使没有保护性外壳也可以保持其结构完整性。结果,可以将阴影CPC进一步重新排列成具有双内间距和双色产生特性的核壳状结构。 PS纳米粒子上装饰的PVP链规定不仅通过溶剂溶胀而且通过形成氢键的结构稳定性而设计的晶格间距。此外,CPC的孵化程度可以调制到核心壳样CPC(完整的阴影)或Janus样CPC(部分阴影)。因此,这里提出的作品提供了一种新的方法,可以在充分利用双乳液模板方法的优点,以创建具有刺激响应性的独特结构和多彩多姿的CPC。

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