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柠檬酸盐稳定的近红外等离子体银纳米金字塔中形状和尺寸依赖性的非线性折射与吸收

Shape and size dependent nonlinear refraction and absorption in citrate-stabilized, near-IR plasmonic silver nanopyramids.

作者信息

Dadhich Bhavesh Kumar, Kumar Indrajit, Choubey Ravi Kant, Bhushan Bhavya, Priyam Amiya

机构信息

Dept. of Physics, School of Applied Sciences, KIIT University, Bhubaneswar-751024, India.

出版信息

Photochem Photobiol Sci. 2017 Oct 11;16(10):1556-1562. doi: 10.1039/c7pp00257b.

Abstract

Using a combination of a mild stabilizer and a mild reductant, sodium citrate and hydrazine hydrate, anisotropic silver nanocrystals (NCs) were synthesized with tunable plasmon peaks at 550 nm, 700 nm, 800 nm, 900 nm and 1010 nm (the samples are named Ag-550, Ag-700, Ag-800, Ag-900 and Ag-1010, respectively). TEM investigations revealed that Ag-550 NCs were pentagonal nanoplates while the other four samples were nanopyramids with a pentagonal base with the edge length varying between 15 and 30 nm. The non-linear optical (NLO) properties of these NCs were studied by the Z-scan technique using the CW He-Ne laser (632.8 nm, 15 mW). The shape change from 2D nanoplates (Ag-550) to 3D nanopyramids (Ag-700) resulted in sign reversal of the non-linear refractive index, n, from a negative (-3.164 × 10 cm W) to a positive one (1.195 × 10 cm W). This corresponds to a change from a self-defocussing effect to a self-focussing one. Besides shape, the size effect is also prominently observed. Amongst nanopyramids, as the edge length increases, n increases linearly and reaches a maximum of 3.124 × 10 cm W. Doubling the edge length from 15 nm to 30 nm resulted in 162% increase in n. On moving from Ag-550 to Ag-900 NCs, with the increasing plasmon wavelength, the non-linear absorption (NLA) coefficient increased exponentially to a high value of 8.52 × 10 cm W. However, Ag-1010 showed 29% decrease in NLA which is attributed to twinning present in the crystal structure as seen in the HR-TEM images. Due to the tunable NLO properties, these anisotropic Ag NCs hold great potential for applications in optical limiting, switching and data storage.

摘要

使用温和的稳定剂柠檬酸钠和温和的还原剂水合肼的组合,合成了各向异性银纳米晶体(NCs),其等离子体峰可在550纳米、700纳米、800纳米、900纳米和1010纳米处调谐(这些样品分别命名为Ag - 550、Ag - 700、Ag - 800、Ag - 900和Ag - 1010)。透射电子显微镜(TEM)研究表明,Ag - 550 NCs是五角形纳米片,而其他四个样品是具有五角形底面的纳米金字塔,边长在15至30纳米之间变化。使用连续波氦氖激光器(632.8纳米,15毫瓦)通过Z扫描技术研究了这些NCs的非线性光学(NLO)特性。从二维纳米片(Ag - 550)到三维纳米金字塔(Ag - 700)的形状变化导致非线性折射率n的符号反转,从负的(-3.164×10厘米/瓦)变为正的(1.195×10厘米/瓦)。这对应于从自散焦效应到自聚焦效应的变化。除了形状,尺寸效应也很显著。在纳米金字塔中,随着边长增加,n线性增加,最大值达到3.124×10厘米/瓦。边长从15纳米加倍到30纳米导致n增加162%。从Ag - 550到Ag - 900 NCs,随着等离子体波长增加,非线性吸收(NLA)系数呈指数增加,达到8.52×10厘米/瓦的高值。然而,Ag - 1010的NLA下降了29%,这归因于高分辨率透射电子显微镜(HR - TEM)图像中晶体结构中存在的孪晶。由于可调节的NLO特性,这些各向异性银NCs在光学限幅、开关和数据存储应用中具有巨大潜力。

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