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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Controlled synthesis of monodisperse gold nanorods with different aspect ratios in the presence of aromatic additives
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Controlled synthesis of monodisperse gold nanorods with different aspect ratios in the presence of aromatic additives

机译:在芳族添加剂存在下有控制地合成不同长径比的单分散金纳米棒

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摘要

This paper reports the synthesis of monodisperse gold nanorods (GNRs) via a simple seeded growth approach in the presence of different aromatic additives, such as 7-bromo-3-hydroxy-2-naphthoic acid (7-BrHNA), 3-hydroxy-2-naphthoic acid (HNA), 5-bromosalicylic acid (5-BrSA), salicylic acid (SA), or phenol (PhOH). Effects of the aromatic additives and hydrochloric acid (HCl) on the structure and optical properties of the synthesized GNRs were investigated. The longitudinal surface plasmon resonance (LSPR) peak wavelength of the resulting GNRs was found to be dependent on the aromatic additive in the following sequence: 5-BrSA (778 nm) > 7-BrHNA (706 nm) > SA (688 nm) > HNA (676 nm) > PhOH (638 nm) without the addition of HCl, but this was changed to 7-BrHNA (920 nm) > SA (890 nm) > HNA (872 nm) > PhOH (858 nm) > 5-BrSA (816 nm) or 7-BrHNA (1,005 nm) > PhOH (995 nm) > SA (990 nm) > HNA (980 nm) > 5-BrSA (815 nm) with the addition of HCl or HNO3, respectively. The LSPR peak wavelength was increased with the increasing concentration of 7-BrHNA without HCl addition; however, there was a maximum LSPR peak wavelength when HCl was added. Interestingly, the LSPR peak wavelength was also increased with the amount of HCl added. The results presented here thus established a simple approach to synthesize monodisperse GNRs of different LSPR wavelengths.
机译:本文报道了在存在不同芳香族添加剂(例如7-溴-3-羟基-2-萘甲酸(7-BrHNA),3-羟基-羟基苯甲酸)的情况下,通过简单的种子生长方法合成单分散金纳米棒(GNR)。 2-萘甲酸(HNA),5-溴水杨酸(5-BrSA),水杨酸(SA)或苯酚(PhOH)。研究了芳香族添加剂和盐酸(HCl)对合成GNR结构和光学性质的影响。发现所得GNR的纵向表面等离振子共振(LSPR)峰值波长按以下顺序取决于芳族添加剂:5-BrSA(778 nm)> 7-BrHNA(706 nm)> SA(688 nm)> HNA(676 nm)> PhOH(638 nm)不添加HCl,但是将其更改为7-BrHNA(920 nm)> SA(890 nm)> HNA(872 nm)> PhOH(858 nm)> 5-分别添加HCl或HNO3的BrSA(816 nm)或7-BrHNA(1,005 nm)> PhOH(995 nm)> SA(990 nm)> HNA(980 nm)> 5-BrSA(815 nm)。在不添加HCl的情况下,随着7-BrHNA浓度的增加,LSPR峰波长增加。但是,加入HCl时,LSPR的峰值波长最大。有趣的是,LSPR的峰值波长也随着HCl的添加而增加。因此,此处介绍的结果建立了一种简单的方法来合成不同LSPR波长的单分散GNR。

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