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首页> 外文期刊>Chemistry: A European journal >Seedless Synthesis of Monodispersed Gold Nanorods with Remarkably High Yield: Synergistic Effect of Template Modification and Growth Kinetics Regulation
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Seedless Synthesis of Monodispersed Gold Nanorods with Remarkably High Yield: Synergistic Effect of Template Modification and Growth Kinetics Regulation

机译:单分散的金纳米棒的无籽合成显着高产量:模板改性和生长动力学调节的协同作用

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摘要

Gold nanorods (AuNRs) are versatile materials due to their broadly tunable optical properties associated with their anisotropic feature. Conventional seed-mediated synthesis is, however, not only limited by the operational complexity and over-sensitivity towards subtle changes of experimental conditions but also suffers from low yield (≈15 %). A facile seedless method is reported to overcome these challenges. Monodispersed AuNRs with high yield (≈100%) and highly adjustable longitudinal surface plasmon resonance (LSPR) are reproducibly synthesized. The parameters that influence the AuNRs growth were thoroughly investigated in terms of growth kinetics and soft-template regulation, offering a better understanding of the template-based mechanism. The facile synthesis, broad tunability of LSRP, high reproducibility, high yield, and ease of scale-up make this method promising for the future mass production of monodispersed AuNRs for applications in catalysis, sensing, and biomedicine.
机译:由于其与其各向异性特征的广泛可调光学性质,金纳米棒(AUNRS)是多功能材料。 然而,常规的种子介导的合成不仅限制了实验条件的微妙变化的操作复杂性和过度敏感性,而且患有低产量(≈15%)。 据报道,克服这些挑战的容易无籽方法。 具有高产量(≈100%)和高度可调节的纵向表面等离子体共振(LSPR)的单分散的AUNR可再现合成。 影响AUNRS生长的参数在生长动力学和软模板调节方面彻底调查,提高了对基于模板的机制。 体面的合成,LSRP的广泛可调性,高再重复性,高产率和放大方案,使得这种方法对未来批量生产的催化作用,感应,感应和生物医学中的应用。

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