...
首页> 外文期刊>Nanoscale >Photochemically grown silver nanodecahedra with precise tuning of plasmonic resonance
【24h】

Photochemically grown silver nanodecahedra with precise tuning of plasmonic resonance

机译:光化学地银nanodecahedra增长精确的调整电浆共振

获取原文
获取原文并翻译 | 示例

摘要

The ability to control the local surface plasmonic resonance (LSPR) absorption peaks of silver nanoparticles will greatly broaden the scope of their practical application. Conventional methods tune the LSPR peaks by modifying the shape or size of the silver nanoparticles. Here, we present a novel method to tune the LSPR band by controlling the particle corner sharpness. A modified photochemical method was used to prepare silver nanoparticles. It was found that the nanoparticles irradiated using light-emitting diodes (LEDs) with a wavelength of 455 nm were decahedral, although the reaction temperature was different. However, the in-plane dipole LSPR peak of the as-prepared silver nanodecahedra exhibited an evident red shift from 460 nm to 500 nm during the synthesis process, and the wavelength of the LSPR peak increased linearly as the reaction time increased. A numerical simulation conducted to investigate the mechanism behind the shift revealed that the red shift of the LSPR peak was mainly induced by the evolution of the corner sharpness of the silver nanodecahedra. These results demonstrated the effectiveness of the method in precisely tuning the LSPR peak by controlling the reaction time. By turning off the irradiation light, the photochemical process could be immediately terminated, and the LSPR peak of the silver nanoparticles remained constant. Compared with conventional methods, the present tuning precision can reach 1 nm.
机译:的能力来控制局部表面电浆共振(LSPR)吸收峰的银纳米粒子将大大扩大的范围他们的实际应用。调优LSPR山峰形状或通过修改银纳米粒子的大小。提出一个新颖的方法来调优LSPR乐队清晰度控制粒子的角落。修改后的光化学方法准备银纳米粒子。使用发光纳米粒子辐照二极管的波长455纳米十面体的,虽然反应温度不同。的好银nanodecahedra展出一个明显的红移期间从460纳米到500纳米合成过程,的波长LSPR峰值随着反应时间线性增加增加了。调查背后的机制转变透露,LSPR峰的红移主要的进化引起的拐角处银nanodecahedra锐度。结果证明的有效性方法精确地调整LSPR峰值控制反应时间。照射光,光化过程可以立即终止,LSPR吗峰的银纳米粒子常数。目前调谐精度可以达到1海里。

著录项

相似文献

  • 外文文献
  • 中文文献
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