贵金属纳米结构的磁光性质。

IF 11.7 1区 化学 Q1 CHEMISTRY, PHYSICAL
Juniper Foxley, Kenneth L Knappenberger
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引用次数: 2

摘要

胶体贵金属纳米结构的磁光特征,跨越两个离散纳米团簇(2nm),表现出丰富的结构-性能相关性,影响包括光子集成电路,光调制,应用光谱学等应用。对于纳米团簇,电子掺杂和单原子取代改变了磁光响应强度和瞬态自旋极化程度。纳米粒子的大小和形态也可以调节等离子体介导的磁光信号的大小和极性。纳米结构与磁光特性之间的密切相互作用在磁圆二色性(MCD)和磁圆光致发光(MCPL)光谱数据中尤为明显。MCD光谱学反映的是金属纳米结构的稳态消光特性,而MCPL光谱学对瞬态激发态的电子自旋和轨道角动量敏感。这篇综述描述了纳米尺度金属的尺寸和结构相关的磁光性质,强调了MCPL在理解瞬态自旋性质和动力学方面日益重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magneto-Optical Properties of Noble Metal Nanostructures.

The magneto-optical signatures of colloidal noble metal nanostructures, spanning both discrete nanoclusters (<2 nm) and plasmonic nanoparticles (>2 nm), exhibit rich structure-property correlations, impacting applications including photonic integrated circuits, light modulation, applied spectroscopy, and more. For nanoclusters, electron doping and single-atom substitution modify both the intensity of the magneto-optical response and the degree of transient spin polarization. Nanoparticle size and morphology also modulate the magnitude and polarity of plasmon-mediated magneto-optical signals. This intimate interplay between nanostructure and magneto-optical properties becomes especially apparent in magnetic circular dichroism (MCD) and magnetic circular photoluminescence (MCPL) spectroscopic data. Whereas MCD spectroscopy informs on a metal nanostructure's steady-state extinction properties, its MCPL counterpart is sensitive to electronic spin and orbital angular momenta of transiently excited states. This review describes the size- and structure-dependent magneto-optical properties of nanoscale metals, emphasizing the increasingly important role of MCPL in understanding transient spin properties and dynamics.

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来源期刊
CiteScore
28.00
自引率
0.00%
发文量
21
期刊介绍: The Annual Review of Physical Chemistry has been published since 1950 and is a comprehensive resource for significant advancements in the field. It encompasses various sub-disciplines such as biophysical chemistry, chemical kinetics, colloids, electrochemistry, geochemistry and cosmochemistry, chemistry of the atmosphere and climate, laser chemistry and ultrafast processes, the liquid state, magnetic resonance, physical organic chemistry, polymers and macromolecules, and others.
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