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Nanostructured grating patterns over a large area fabricated by optically directed assembly

机译:在大面积纳米光栅模式所使用的光定向组装

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Optical trapping and manipulation of nanoparticles (NPs) have been widely used in nanotechnology and biology. Here, we demonstrate an optically directed assembly (ODA) route for bottom-up fabrication of stable nanostructured grating patterns in solution using laser standing evanescent wave (LSEW) fields. The control mechanism is the intriguing cooperative action of the periodically line-centered attractive optical gradient force and the near field dipolar coupling force induced by LSEW, which leads to assembly of the colloidal silver NPs into robust grating patterns within minutes. The anisotropic polarization nature of the grating patterns was studied further by examining the morphology correlation of the surface-enhanced Raman scattering (SERS)-based signal amplification. We show the LSEW ODA method can optimize and stabilize the strongest dipolar coupling style among the NPs during pattern assembly. These results advance the further understanding of ODA of colloid NPs and might have many potential applications in SERS, catalysis, nanophotonics and nano-fabrication.
机译:纳米粒子的光学捕获和操纵(NPs)已经广泛应用于纳米技术和生物学。定向组装(ODA)为自下而上的路线制造稳定的纳米光栅使用激光模式解决方案隐失波(LSEW)领域。机制是有趣的合作行动定期line-centered吸引力的光梯度力和近场偶极耦合LSEW引起的力,导致组装的胶体银NPs健壮光栅模式在几分钟内。光栅的偏振性质模式进一步通过分析形态学研究表面增强拉曼之间的相关性散射(ser)的信号放大。显示LSEW ODA方法可以优化和稳定的偶极耦合方式NPs在模式中组装。结果推进ODA的进一步理解胶体的NPs,可能有很多的潜力应用程序在ser、催化、纳米光子学和纳米制造。

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