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PNAS Plus: Light-enabled reversible self-assembly and tunable optical properties of stable hairy nanoparticles

机译:PNAS Plus:稳定毛状纳米粒子的光可逆自组装和可调光学特性

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摘要

The ability to dynamically organize functional nanoparticles (NPs) via the use of environmental triggers (temperature, pH, light, or solvent polarity) opens up important perspectives for rapid and convenient construction of a rich variety of complex assemblies and materials with new structures and functionalities. Here, we report an unconventional strategy for crafting stable hairy NPs with light-enabled reversible and reliable self-assembly and tunable optical properties. Central to our strategy is to judiciously design amphiphilic star-like diblock copolymers comprising inner hydrophilic blocks and outer hydrophobic photoresponsive blocks as nanoreactors to direct the synthesis of monodisperse plasmonic NPs intimately and permanently capped with photoresponsive polymers. The size and shape of hairy NPs can be precisely tailored by modulating the length of inner hydrophilic block of star-like diblock copolymers. The perpetual anchoring of photoresponsive polymers on the NP surface renders the attractive feature of self-assembly and disassembly of NPs on demand using light of different wavelengths, as revealed by tunable surface plasmon resonance absorption of NPs and the reversible transformation of NPs between their dispersed and aggregated states. The dye encapsulation/release studies manifested that such photoresponsive NPs may be exploited as smart guest molecule nanocarriers. By extension, the star-like block copolymer strategy enables the crafting of a family of stable stimuli-responsive NPs (e.g., temperature- or pH-sensitive polymer-capped magnetic, ferroelectric, upconversion, or semiconducting NPs) and their assemblies for fundamental research in self-assembly and crystallization kinetics of NPs as well as potential applications in optics, optoelectronics, magnetic technologies, sensory materials and devices, catalysis, nanotechnology, and biotechnology.
机译:通过使用环境触发因素(温度,pH,光或溶剂极性)动态组织功能性纳米颗粒(NP)的能力为快速便捷地构建具有新结构和功能性的各种复杂组件和材料提供了重要的视角。在这里,我们报告了一种非常规策略,可用于制造具有光可逆和可靠的自组装以及可调光学特性的稳定毛状NP。我们策略的核心是明智地设计两亲性星形二嵌段共聚物,其中包括内部亲水性嵌段和外部疏水性光响应性嵌段作为纳米反应器,以指导单分散等离激元NP的合成并用光响应性聚合物永久封端。毛状NP的大小和形状可以通过调节星形双嵌段共聚物内部亲水性嵌段的长度来精确调整。永久性将光敏聚合物锚固在NP表面上,使NP能够根据需要使用不同波长的光进行自组装和拆卸,这具有吸引人的特征,如NP的可调谐表面等离子体共振吸收和NP在分散和分散之间的可逆转变所揭示的那样。汇总状态。染料的包封/释放研究表明,此类光响应性NP可用作智能客体分子纳米载体。通过扩展,星形嵌段共聚物策略可以设计出一系列稳定的刺激响应NP(例如对温度或pH敏感的聚合物封端的磁性,铁电,上转换或半导体NP)及其组件,以进行基础研究NPs的自组装和结晶动力学,以及在光学,光电,磁性技术,传感材料和设备,催化,纳米技术和生物技术中的潜在应用。

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