个性化文献订阅>期刊> Journal of Materials Chemistry
 

A plasmonic nano-antenna with controllable resonance frequency: Cu1.94S-ZnS dimeric nanoheterostructure synthesized in solution

  作者 HUANG FENG; WANG XIAOLEI; XU JU; CHEN DAQIN; WANG YUANSHENG  
  选自 期刊  Journal of Materials Chemistry;  卷期  2012年22-42;  页码  22614-22618  
  关联知识点  
 

[摘要]This work presents a strategy for fine control of the localized surface plasmonic resonance (LSPR) frequency of nano-antennas by constructing dimeric nanoheterostructures, in which the first phase serves as a plasmonic resonance source, while the second one as a tunable component for the fine-control of the LSPR frequency. Following this strategy, Cu1.94S-ZnS dimeric nanoheterostructures are synthesized in solution, with Cu1.94S being the plasmonic resonance source while ZnS the tunable dielectric component. An ideal equivalent electric circuit model is established to simulate the optical response of the nano-antennas. By managing the growth of the ZnS nanocrystals, the LSPR peak is proved designable and controllable in the range of 1390 nm-1680 nm, which renders the material potentially applicable in telecommunication. The reported results may provide new strategies for designing and fabricating various technologically important nano-devices.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内