首页> 外文会议>Conference on Plasmonics: Metallic Nanostructures and their Optical Properties >Sum Frequency Generation from alkanethiol capped metallic nanoparticles and vibrational mode specific enhancement in nanoparticle aggregates.
【24h】

Sum Frequency Generation from alkanethiol capped metallic nanoparticles and vibrational mode specific enhancement in nanoparticle aggregates.

机译:纳米粒子聚集体中链烷醇盖金属纳米粒子和振动模式的频率产生。

获取原文

摘要

Vibrational Sum Frequency Generation (VSFG) on gold and silver nanoparticles capped with alkanethiols is studied Aggregation of nanoparticles is characterized using TEM and SEM methods. VSFG process is enhanced due to the coupling of surface plasmon induced by the visible radiation in gold nanoparticle with vibrational transition of chemisorbed alkanethiol excited by the infrared beam VSFG spectra show methyl and methylene stretch transitions. The ratio of their intensities varies with changing size of the particles and length of alkane chain Dramatic change in intensity ratio and overall enhancement of VSFG intensity is observed when aggregation of gold nanoparticles occurs. For the first time we report the mode-specific SFG enhancement, namely, the methyl antisymmetric stretch gains the highest intensity. One possible explanation is that enhancement is caused by the change in SFG selection rules due to the effect of locally inhomogeneous electric field of plasmon. VSFG response fiom aggregates is significantly depolarized in comparison with response fiom non-interacting particles. This can be due to the depolarization of plasmon induced in aggregates of metallic nanoparticles. Divergence of VSFG beam fiom aggregates is stronger than that of the beam fiom non-interacting particles. This can be attributed to the incoherent nonlinear scattering in aggregates. Potential applications of SFG nanoprobes for imaging, IR radiation conversion, and opto-electronic integrated circuits are discussed.
机译:使用TEM和SEM方法研究了用链烷醇的金和银纳米颗粒上的振动和频率产生(VSFG)的金和银纳米粒子的聚集在特征。 VSFG工艺由于通过红外光束VSFG光谱激发的化学吸附链烷醇的振动转变而致粘附的表面等离子体诱导的表面等离子体的耦合,显示甲基和亚甲基拉伸转变。它们的强度的比例随粒子的变化而变化,并且当发生金纳米粒子的聚集时,观察到强度比的碱性比率的显着变化和VSFG强度的总体增强。首次报告特定于模式的SFG增强,即,甲基反对二手朗格增益最高强度。一种可能的解释是,由于局部不均匀电场的等离子体的效果,由SFG选择规则的变化引起了增强。与响应FIOM非相互作用颗粒相比,VSFG响应滤光器聚集体显着去极化。这可能是由于金属纳米颗粒聚集体诱导的去极化。 VSFG梁Fiom聚集体的分歧比梁Fiom非相互作用颗粒的分歧更强。这可以归因于聚集体中的非线性非线性散射。讨论了SFG纳米体对成像,IR辐射转换和光电集成电路的潜在应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号