首页> 外文期刊>Current Forestry Reports >Island Growth in the Seed-Mediated Overgrowth of Monometallic Colloidal Nanostructures
【24h】

Island Growth in the Seed-Mediated Overgrowth of Monometallic Colloidal Nanostructures

机译:种子介导的岛状过度生长的单金属胶体纳米结构的生长

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

SummaryManipulating the growth mode of colloidal nanocrystals is of both fundamental interest and technological importance because it is often connected to the control of their shape, morphology, and physicochemical properties. In conventional wisdom, island growth during thin-film deposition is restricted to lattice-mismatched materials. Here, we show that deposition of Au on Au nanostructures (e.g., nanoplates, nanorods, and nanospheres) can produce separate Au islands on the seed surface with tunable size and density while preserving the original crystal structure. The island growth in the system is ascribed to the synergistic effect of fast redox kinetics and surface capping of large polymeric ligands. Decreasing the reaction rate or changing the capping ligands could readily transform the deposition of Au on Au nanostructures from island growth to layer-by-layer mode. We further take advantage of the dense hotspots of the islands-on-plate nanostructures and demonstrate their excellence in surface-enhanced Raman scattering detection.Graphical Display OmittedHighlights?Island growth has been achieved in a monometallic Au system without lattice mismatch?Island growth is enabled by controlled crystal-growth kinetics and surface properties?Island growth opens a way to novel monometallic nanocrystals with intriguing propertiesThe Bigger PictureNoble-metal nanocrystals find broad application in sensing, imaging, and catalysis, and their performance is heavily dependent on the nanostructures. Until now, general rules of crystal growth have been established and constitute the current wisdom in the structural design of noble-metal nanocrystals. For example, island growth of a metal on nanocrystals of another metal is usually induced by lattice mismatch between the two metals. However, in many cases, great possibilities lie beyond these rules for discovering new nanostructures with intriguing properties and applications. Here, we demonstrate this possibility by establishing a mechanism that allows an unusual island-growth mode of monometallic Au without involving any lattice mismatch. It enables production of a family of Au island structures, which showed superior performance in surface-enhanced Raman scattering. Our findings could inspire further efforts in building sophisticated metal nanostructures.Gold islands, gold colonies: by controlling reaction kinetics and surface chemistry, Yin and colleagues have discovered an unconventional growth mode of Au nanocrystals whereby Au islands are formed. The resulting Au islands showed excellent properties in surface-enhanced Raman scattering. This finding opens great opportunities for building sophisticated structural features of noble metals with intriguing properties and applications.
机译:综述胶体纳米晶体的生长方式具有基本兴趣和技术重要性,因为它通常与它们的形状,形态和物理化学性质的控制相连。在常规智慧中,薄膜沉积期间的岛生长仅限于晶格 - 不匹配的材料。在这里,我们表明Au在Au纳米结构(例如,纳米板,纳米棒和纳米球)上的沉积可以在种子表面上产生单独的Au岛,并在保持原始晶体结构的同时在种子表面上产生单独的Au岛。该系统中的岛屿生长归因于快速氧化还原动力学和大型聚合物配体的表面覆盖的协同作用。降低反应速率或改变封端配体可以容易地将Au沉积的Au纳米结构沉积从岛生长到逐层模式。我们进一步利用了岛上纳米结构的密集热点,并展示了它们在表面增强的拉曼散射检测中的卓越性。图形显示器省略了?岛增长已经在没有格斗错配的单身空白AU系统中实现了岛屿生长通过受控的晶体生长动力学和表面特性?岛生长开辟了一种新的单金属纳米晶体与有趣性质的方式,较大的Pictureenble-金属纳米晶体在感测,成像和催化中发现广泛的应用,它们的性能严重依赖于纳米结构。到目前为止,已经建立了晶体增长的一般规则,并构成了贵金属纳米晶体结构设计中的目前的智慧。例如,通常通过两种金属之间的晶格错配诱导金属纳米晶体上的金属的岛生长。然而,在许多情况下,很大的可能性围绕这些用于发现具有有趣性质和应用的新纳米结构的规则。在这里,我们通过建立一种机制来证明这种可能性,该机制允许单金属AU的不寻常的岛屿生长模式而不涉及任何格式错配。它能够生产Au岛结构的家庭,在表面增强的拉曼散射方面表现出卓越的性能。我们的调查结果可以激发进一步努力建设复杂的金属纳米结构.Gold岛,金菌落:通过控制反应动力学和表面化学,阴和同事已经发现了Au纳米晶体的非传统生长模式,由此形成了Au岛。所得到的Au岛在表面增强拉曼散射中表现出优异的性能。这一发现开辟了贵金属复杂结构特征的巨大机会,具有有趣的特性和应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号