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首页> 外文期刊>Macromolecular chemistry and physics >Breaking Out the Traditional Polymerization: Tailoring the Shape, Structure, and Optical Properties of Polydopamine by Using CdTe Quantum Dots
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Breaking Out the Traditional Polymerization: Tailoring the Shape, Structure, and Optical Properties of Polydopamine by Using CdTe Quantum Dots

机译:通过使用CDTE量子点来剪裁聚二胺的形状,结构和光学性质

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摘要

The potential applications of shape-controlled polymeric nanostructures demand well-defined methods to create tailored shapes. On the other hand, polydopamine (PDA) is a novel polymer promising a variety of innovative applications in many different areas. Since there is no consensus on the pathways involved in the mechanism of formation of PDA, the control of the final morphologies of PDA nanostructures is a challenging task. Herein, it is demonstrated for the first time, how CdTe quantum dots (CdTe QDs) can be used to control the final shape of polymeric structures, in particular, PDA particles. Oxidative self-polymerization of dopamine is performed in the presence of CdTe QDs, which triggers the formation of blue-colored rod-like PDA particles. Scanning electron microscopy (SEM), transmission electron microscopy (TEM), UV-Vis, Fourier transform infrared (FT-IR) and Raman spectroscopies, and electrochemical techniques are employed to characterize the structural features of the rod-like PDA particles. Herein, CdTe QDs modulate the oxidative polymerization of dopamine by the supramolecular assembly of PDA building blocks by π-π and hydrogen bonding interactions, coordination with cadmium ions, and electron transfer processes. The results illustrated here describe a new strategy to manipulate the morphology of PDA nanostructures leading to novel optical properties, opening new applications, and shedding light on the complex mechanism of PDA formation.
机译:形状控制的聚合物纳米结构的潜在应用需要明确定义的方法,以产生定制的形状。另一方面,聚二胺(PDA)是一种新的聚合物,其具有许多不同地区各种创新应用的新型聚合物。由于对PDA形成机制的途径没有共识,因此PDA纳米结构的最终形态的控制是一个具有挑战性的任务。在此,首次证明CDTE量子点(CDTE QDS)可以用于控制聚合物结构的最终形状,特别是PDA颗粒。多巴胺的氧化自聚合在CdTe QD的存在下进行,这触发了蓝色棒状PDA颗粒的形成。扫描电子显微镜(SEM),透射电子显微镜(TEM),UV-VI,傅里叶变换红外(FT-IR)和拉曼光谱和电化学技术用于表征棒状PDA颗粒的结构特征。在此,CDTE QD通过π-π和氢键相互作用,与镉离子的协调和电子转移方法调节PDA构建块的超分子组装和电子转移方法调节多巴胺的氧化聚合。这里说明的结果描述了一种操纵PDA纳米结构的形态的新策略,所述PDA纳米结构导致新型光学性质,开启新应用,并在PDA形成的复杂机制上脱落。

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