DocumentCode :
21468
Title :
Microfiber With Methyl Blue-Functionalized Reduced Graphene Oxide and Violet Light Sensing
Author :
Zhengwen Tian ; Huihui Lu ; Bing Yang ; Yiting Wang ; Weiqia Qiu ; Jianhui Yu ; Jieyuan Tang ; Yunhan Luo ; Xiang Cai ; Shaozao Tan ; Zhe Chen ; Jun Zhang
Author_Institution :
Dept. of Optoelectron. Eng., Jinan Univ., Guangzhou, China
Volume :
27
Issue :
7
fYear :
2015
fDate :
April1, 1 2015
Firstpage :
798
Lastpage :
801
Abstract :
This letter introduces a methyl blue-functionalized reduced graphene oxide (MB-rGO) deposited on a microfiber (MF) and demonstrates its absorption characteristics can be tuned by violet light illumination. MB-rGO is fabricated by rGO stacked to noncovalent MB, exhibiting intriguing optical, electrical properties, and soluble in water. The MB-rGO was utilized as sensitive materials and MF as a substrate. The enhanced interaction between the light and the MB-rGO can be achieved via strong evanescent light of the MF. The experiments show that when the violet light is illuminated onto the MB-rGO film with power ranging from 0.03 to 12.77 mW, the transmitted optical power of the MF changes with a relative variation of 2.5~3 dB in broadband (1520-1620 nm) operation. The device has a sensitivity of ~0.235 dB/mW (1520 nm) and illustrates that the MB-rGO possesses high potentiality in photonic application, such as fiber-optic sensor and other photonic devices.
Keywords :
Raman spectra; fibre optic sensors; graphene; micro-optomechanical devices; microsensors; optical fibre fabrication; optical films; organic compounds; thin film sensors; CO; absorption characteristics; electrical properties; evanescent light; methyl blue-functionalized reduced graphene oxide film; microfiber; noncovalent methyl blue; optical properties; photonic application; power 0.03 mW to 12.77 mW; transmitted optical power; violet light illumination; violet light sensing; wavelength 1520 nm to 1620 nm; Graphene; Optical device fabrication; Optical fiber sensors; Optical fibers; Optical films; Fiber-Optics; Fiber-optics; methyl blue-functionalized reduced graphene oxide; microfiber; violets sensing;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2015.2392795
Filename :
7010898
Link To Document :
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