Seed-mediated Growth of Silver Nanoplates and Investigation on Their Nonlinear Optical Behaviors

Yalan Wang, Xiang Li, Anle Wang, Jin Zhang, Jianghai Wo, Ququan Wang
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引用次数: 1

Abstract

Silver nanoplates have obvious advantages compared with other silver structural nanoparticles due to their wide tunability of the local surface plasmon resonance (LSPR) and significant local field enhancement around the sharp corners. Nonlinear optical absorption (NLA) and nonlinear optical refraction (NLR) are widely employed to characterize the nonlinear optical properties due to their simply testing requirement and comparable valuable results. Z-scan method is widely used in optical characterization of nonlinear properties of different materials. Here, a seed-mediated growth method of the silver nanoplates with well controlled size and local surface plasmon wavelength is presented. The nanoparticle size increases gradually and becomes more uniform distribution as the red-shift of the plasmon resonance wavelength from 650 nm to 950 nm. In particular, we show the dependence of NLA and NLR of the silver nanoplates on the LSPR. The absolute value of effective NLA coefficient increases from 1.38 to 4 cm/GW and that of the NLR index increases as large as 3 times when the LSPR wavelength changes from 728 nm to 898 nm, which is attributed to the strong plasmon absorption and local filed enhancement of larger size silver nanoplates. These findings have great potentials in the explorations of functional non-linear devices.
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银纳米片的种子介导生长及其非线性光学行为研究
银纳米片具有较宽的局部表面等离子体共振(LSPR)可调性和尖角处明显的局部场增强,与其他银结构纳米粒子相比具有明显的优势。非线性光吸收(NLA)和非线性光折射(NLR)由于测试要求简单,结果具有可比性而被广泛用于表征非线性光学特性。z扫描方法广泛应用于各种材料非线性特性的光学表征。本文提出了一种具有良好尺寸控制和局部表面等离子体波长控制的银纳米片的种子介导生长方法。随着等离子体共振波长从650 nm红移到950 nm,纳米粒子尺寸逐渐增大,分布更加均匀。特别地,我们展示了银纳米片的NLA和NLR对LSPR的依赖。当LSPR波长从728 nm增加到898 nm时,有效NLA系数的绝对值从1.38增加到4 cm/GW, NLR指数的绝对值增加了3倍,这是由于大尺寸银纳米片的强等离子体吸收和局部场增强。这些发现在功能非线性器件的探索中具有很大的潜力。
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