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聚合物导向的等离激元铝纳米晶体生长

Polymer-Directed Growth of Plasmonic Aluminum Nanocrystals.

作者信息

Lu Shaoyong, Yu Hua, Gottheim Samuel, Gao Huimin, DeSantis Christopher J, Clark Benjamin D, Yang Jian, Jacobson Christian R, Lu Zhongyuan, Nordlander Peter, Halas Naomi J, Liu Kun

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry , Jilin University , Changchun 130012 , P.R. China.

Department of Chemistry , Rice University , Houston , Texas 77005 , United States.

出版信息

J Am Chem Soc. 2018 Nov 14;140(45):15412-15418. doi: 10.1021/jacs.8b08937. Epub 2018 Oct 30.

Abstract

The challenge of controllable chemical synthesis of aluminum nanocrystals (Al NCs) has been met with only limited success. A major barrier is the absence of effective ligands to control the nucleation and growth of Al NCs. Here we demonstrate the size- and shape-controlled synthesis of monodisperse Al NCs using a polymer ligand, cumyl dithiobenzoate-terminated polystyrene (CDTB-PS). Density functional theory (DFT) calculations indicate that CDTB-PS shows selective absorption on Al{100} facets, inducing the formation of nanocubes and trigonal bipyramids. An excess of CDTB-PS, however, decreases the supersaturation of Al atoms, leading to the formation of {111} facet-terminated octahedral and triangular plates. The concentration of the catalyst, titanium (IV) isopropoxide, determines the size of Al NCs by controlling the number of seeds. Depending on nanoparticle size, the solutions of Al NCs possess distinct colors, a characteristic feature of plasmonic nanomaterials. This robust and controlled chemical synthesis of Al NCs lays a foundation for Al as a sustainable plasmonic material for current and future applications.

摘要

铝纳米晶体(Al NCs)可控化学合成面临的挑战仅取得了有限的成功。一个主要障碍是缺乏有效的配体来控制Al NCs的成核和生长。在此,我们展示了使用聚合物配体——对异丙基苯二硫代苯甲酸酯封端的聚苯乙烯(CDTB - PS)来实现单分散Al NCs的尺寸和形状可控合成。密度泛函理论(DFT)计算表明,CDTB - PS在Al{100}晶面上表现出选择性吸附,从而诱导形成纳米立方体和三角双锥体。然而,过量的CDTB - PS会降低Al原子的过饱和度,导致形成{111}面终止的八面体和三角形薄片。催化剂异丙醇钛(IV)的浓度通过控制晶种数量来决定Al NCs的尺寸。根据纳米颗粒的大小,Al NCs溶液具有不同的颜色,这是等离子体纳米材料的一个特征。这种稳健且可控的Al NCs化学合成方法为Al作为当前及未来应用的可持续等离子体材料奠定了基础。

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