>
Fa   |   Ar   |   En
   graphene/au-enhanced plastic clad silica fiber optic surface plasmon resonance sensor  
   
نویسنده wei wei ,nong jinpeng ,zhu yong ,zhang guiwen ,wang ning ,luo suqin ,chen na ,lan guilian ,chuang chin-jung ,huang yu
منبع plasmonics - 2018 - دوره : 13 - شماره : 2 - صفحه:483 -491
چکیده    Owing to its large surface-to-volume ratio and good biocompatibility, graphene has been identified as a highly promising candidate as the sensing layer for fiber optic sensors. in this paper, a graphene/au-enhanced plastic clad silica (pcs) fiber optic surface plasmon resonance (spr) sensor is presented. a sheet of graphene is employed as a sensing layer coated around the au film on the pcs fiber surface. the pcs fiber is chosen to overcome the shortcomings of the structured microfibers and construct a more stable and reliable device. it is demonstrated that the introduction of graphene can enhance the intensity of the confined electric field surrounding the sensing layer, which results in a stronger light-matter interaction and thereby the improved sensitivity. the sensitivity of graphene-based fiber optic spr sensor exhibits more than two times larger than that of the conventional gold film spr fiber optic sensor. furthermore, the dynamic response analyses reveal that the graphene/au fiber optic spr sensor exhibits a fast response (5 s response time) and excellent reusability (3.5% fluctuation) to the protein biomolecules. such a graphene/au fiber optic spr sensor with high sensitivity and fast response shows a great promise for the future biochemical application.
کلیدواژه fiber optic sensor ,surface plasmon resonance ,graphene ,plastic clad silica fiber
آدرس ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china. chinese academy of sciences, chongqing institute of green and intelligent technology, china, ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china. chinese academy of sciences, chongqing institute of green and intelligent technology, china, ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china, ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china, ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china, chongqing academy of science and technology, chongqing research center for advanced materials, china, ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china, ministry of education of china, chongqing university, college of optoelectronic engineering, key laboratory of optoelectronic technology & systems, china, chinese academy of sciences, chongqing institute of green and intelligent technology, china. national dong hwa university, department of opto-electronic engineering, china, chinese academy of sciences, chongqing institute of green and intelligent technology, china
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved