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One-Step Preparation of Biocompatible Gold Nanoplates with Controlled Thickness and Adjustable Optical Properties for Plasmon-Based Applications

机译:用于基于等离子体应用的受控厚度和可调节光学性能的生物相容性金纳层的一步制备

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摘要

The ability to synthesize plasmonic nanomaterials with well-defined structures and tailorable size is crucial for exploring their potential applications. Gold nanoplates (AuNPLs) exhibit appealing structural and optical properties, yet their applications are limited by difficulties in thickness control. Other challenges include a narrow range of tunability in size and surface plasmon resonance, combined with a synthesis conventionally involving cytotoxic cetyltrimethylammonium (CTA) halide surfactant. Here, a one-step, high-yield synthesis of single-crystalline AuNPLs is developed, based on the combined use of two structure-directing agents, methyl orange and FeBr3, which undergo preferential adsorption onto different crystalline facets of gold. The obtained AuNPLs feature high shape homogeneity that enables mesoscopic self-assembly, broad-range tunability of dimensions (controlled thickness from approximate to 7 to approximate to 20 nm, accompanied by modulation of the edge length from approximate to 150 nm to approximate to 2 mu m) and plasmonic properties. These merits, coupled with a preparation free of CTA-halide surfactants, have facilitated the exploration of various uses, especially in bio-related areas. For example, they are demonstrated as biocompatible photothermal agents for cell ablation in NIR I and NIR II windows. This work paves the way to the innovative fabrication of anisotropic plasmonic nanomaterials with desired attributes for wide-ranging practical applications.
机译:用明确定义的结构合成等离子体纳米材料的能力对于探索其潜在应用至关重要。金纳普板(AUNPLS)表现出吸引力的结构和光学性质,但它们的应用受到厚度控制困难的限制。其他挑战包括窄范围和表面等离子体共振的可调性,与常规涉及细胞毒性甲酰基三甲基铵(CTA)卤化物表面活性剂的合成结合。此处,基于两种结构引导剂,甲基橙和FeBr3的组合使用的单晶AuNPLS的一步高产量合成,其经历优先吸附在金的不同晶面上。所获得的AUNPLS具有高形状的均匀性,使介面透视自组装,尺寸的宽范围可调性(受控厚度从大致7近似到20nm,伴随着边缘长度从近似到150nm的修改,以近似到2μm m)和等离子体性质。这些优点与无CTA卤化物表面活性剂的制备相结合,促进了各种用途的探索,特别是在与生物相关的区域中。例如,它们被证明是在NIR I和NIR II窗口中的用于细胞消融的生物相容性光热试剂。这项工作铺设了具有宽范围实际应用的所需属性的各向异性等离子体纳米材料的创新制造。

著录项

  • 来源
    《Advanced Functional Materials》 |2020年第40期|2003512.1-2003512.13|共13页
  • 作者单位

    Univ Leeds Sch Phys & Astron Leeds LS2 9JT W Yorkshire England|Univ Leeds St Jamess Univ Hosp Leeds Inst Med Res Leeds LS9 7TF W Yorkshire England|Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Phys & Astron Leeds LS2 9JT W Yorkshire England|Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Elect & Elect Engn Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Phys & Astron Leeds LS2 9JT W Yorkshire England|Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England|Univ Leeds Sch Chem & Proc Engn Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England|Univ Leeds Sch Chem & Proc Engn Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England|Univ Leeds Sch Chem & Proc Engn Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England|Univ Leeds Sch Chem & Proc Engn Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Phys & Astron Leeds LS2 9JT W Yorkshire England|Univ Leeds Sch Chem Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Phys & Astron Leeds LS2 9JT W Yorkshire England|Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England;

    Univ Leeds St Jamess Univ Hosp Leeds Inst Med Res Leeds LS9 7TF W Yorkshire England;

    Univ Leeds St Jamess Univ Hosp Leeds Inst Med Res Leeds LS9 7TF W Yorkshire England;

    Univ Leeds Sch Phys & Astron Leeds LS2 9JT W Yorkshire England|Univ Leeds Bragg Ctr Mat Res Leeds LS2 9JT W Yorkshire England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gold nanoplates; high-yield synthesis; self-assembly; surface plasmon resonance; thickness control;

    机译:金纳普板;高收益合成;自组装;表面等离子体共振;厚度控制;

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