Wet-chemical synthesis of two-dimensional complex nanorings for near-field focusing

IF 1.7 4区 化学
Insub Jung, Sungwoo Lee, Soohyun Lee, Sungho Park
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引用次数: 0

Abstract

Plasmonic nanorings are promising building blocks for a variety of applications, including optical and biological sensing, and energy because the open inner spaces of the nanorings exhibit a high surface-to-area ratio and possess unique optical properties that are different from solid nanostructures. However, the simple architecture of mono-rim based structures leads to low electromagnetic near-field confinement, which requires a more complex structure to facilitate effective interaction with light. Herein, we report on recent progress of synthetic strategies for fabricating plasmonic nanorings using both top-down and bottom-up approaches. First, we introduce the conventional methods for achieving classical ring architectures. Then, we discuss rationally designed synthesis methods for creating advanced and structurally unique nanostructures to increase near-field enhancement. This process involves multi-step chemical toolkits that enable control over the shape and the introduction of repeated units in a single entity. Then, we explore the potential applications of complex nanoring architectures.

Abstract Image

Abstract Image

湿化学合成用于近场聚焦的二维复合纳米环
质子纳米环是一种很有前途的构件,可用于光学、生物传感和能源等多种应用,因为纳米环的开放式内部空间显示出很高的表面积比,并具有不同于固体纳米结构的独特光学特性。然而,基于单衬圈结构的简单架构导致电磁近场限制较低,这就需要更复杂的结构来促进与光的有效互动。在此,我们报告了采用自上而下和自下而上两种方法制造等离子体纳米环的合成策略的最新进展。首先,我们介绍了实现经典环状结构的传统方法。然后,我们讨论了合理设计的合成方法,以创建先进的、结构独特的纳米结构,从而提高近场增强效果。这一过程涉及多步骤化学工具包,可控制形状并在单个实体中引入重复单元。然后,我们将探讨复杂纳米结构的潜在应用。
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来源期刊
Bulletin of the Korean Chemical Society
Bulletin of the Korean Chemical Society Chemistry-General Chemistry
自引率
23.50%
发文量
182
期刊介绍: The Bulletin of the Korean Chemical Society is an official research journal of the Korean Chemical Society. It was founded in 1980 and reaches out to the chemical community worldwide. It is strictly peer-reviewed and welcomes Accounts, Communications, Articles, and Notes written in English. The scope of the journal covers all major areas of chemistry: analytical chemistry, electrochemistry, industrial chemistry, inorganic chemistry, life-science chemistry, macromolecular chemistry, organic synthesis, non-synthetic organic chemistry, physical chemistry, and materials chemistry.
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