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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Silica-Conjugated Polymer Hybrid Fluorescent Nanoparticles: Preparation by Surface-Initiated Polymerization and Spectroscopic Studies
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Silica-Conjugated Polymer Hybrid Fluorescent Nanoparticles: Preparation by Surface-Initiated Polymerization and Spectroscopic Studies

机译:二氧化硅缀合的聚合物杂化荧光纳米粒子:通过表面引发的聚合和光谱研究制备

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Organic/inorganic hybrid nanoscale materials possess fascinating optical, electronic, magnetic, and catalytic properties that are promising for a variety of practical applications. Such properties can be dramatically affected by the hierarchical structure and molecular organization in the nanomaterials. Herein, we employed surface-initiated Kumada catalyst-transfer polymerization to prepare hybrid materials consisting of shells of conjugated polymers (CPs)-polythiophene or poly(p-phenylene)-and their block copolymers covalently attached to the surface of silica nanoparticles. Because of the controlled chain-growth mechanism of surface-initiated polymerization, we obtained structurally well-defined CP blocks in the diblock copolymer shells, which produced distinct spectroscopic properties related to the intraparticle excitation energy transfer between the nanoscale polymer shell components, as well as the formation of interfacial exciplex states. The spectroscopic phenomena were further understood via time-resolved transient absorption spectroscopy studies. Overall, the surface-initiated polymerization provided an efficient tool to prepare structurally defined and highly stable organic polymer shell-inorganic core nanoparticles with tunable spectroscopic characteristics not achievable from corresponding single-component systems.
机译:有机/无机杂交纳米级材料具有令人着迷的光学,电子,磁性和催化性能,这是对各种实际应用有前途的。这些性质可以通过纳米材料中的层次结构和分子组织显着影响。在此,我们采用表面引发的熊猫催化剂转移聚合以制备由共轭聚合物(CPS)壳(CPS) - 聚(对苯基)的壳组成的杂化材料 - 以及它们的嵌段共聚物与二氧化硅纳米粒子的表面共价连接。由于表面引发聚合的受控链生长机制,我们在二嵌段共聚物壳中获得了结构良好定义的CP嵌段,其产生了与纳米级聚合物壳组分之间的椎间内激发能量传递有关的不同的光谱性质,以及形成界面的Exciplex状态。通过时间分辨的瞬态吸收光谱研究进一步理解光谱现象。总的来说,表面引发的聚合提供了一种有效的工具,用于制备结构定义和高度稳定的有机聚合物壳 - 无机核心纳米颗粒,其可从相应的单组分系统中无法实现的可调光谱特性。

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