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Uniform Chiral Gap Synthesis for High Dissymmetry Factor in Single Plasmonic Gold Nanoparticle

机译:单粒子纳米粒子颗粒中高不对称因子的均匀手性间隙合成

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Synthesis of chiral plasmonic materials has been highlighted for the last decades with their optical properties and versatile potential applications. Recently reported aqueous-based amino acid- and peptide-directed synthesis of chiral plasmonic gold nanoparticles with 432 point-group symmetry shows exceptionally high chiroptic response within 100 nm scales. Despite its already excellent chiroptic response, a single-nanoparticle dark field scattering study revealed that full chiroptic potential of chiral gold nanoparticle is limited with its overall synthetic uniformity. Based on this knowledge, we present a multi-chirality-evolution step synthesis method for the enhancement of chiroptic response through an increase in particle uniformity. Detailed time variant study and interrelationship study of reaction parameters allowed the systematic construction of design principles for chiral nanoparticles with exceptional chiroptic response. With the application of precisely controlled growth kinetic to two distinct growth regimes, modified chiral gold nanoparticles showed significantly improved uniformity, achieving an improved dissymmetry factor of g = 0.31. We expect that our strategy will aid in precise morphology and property control for chiral nanomaterials, which can be used in various plasmonic metamaterial applications.
机译:在过去的几十年中,对手性等离子体材料的合成已经突出了它们的光学性质和多功能潜在应用。最近报道了具有432个点组对称性的细胞血浆金纳米粒子的含水基氨基酸和肽的合成,在100nm尺寸范围内显示出异常高的肾反应。尽管已经存在优异的手胆反应,但单一纳米颗粒暗场散射研究表明,手性金纳米粒子的全潮流潜力受其整体合成均匀性的限制。基于这种知识,我们介绍了一种通过增加颗粒均匀性提高了肾反应响应的多曲线演化步骤合成方法。反应参数的详细时间变体研究和相互关系研究允许对手性纳米粒子的设计原理进行系统构建,具有特殊的肾激光反应。随着精确控制的生长动力学在两个不同的生长制度中,改性的手性金纳米颗粒显示出显着提高的均匀性,实现了G = 0.31的改进的不对称因子。我们预计我们的战略将有助于对手性纳米材料的精确形态和性能控制,可用于各种等离子体超材料应用。

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