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In situ plasmonic optical fiber detection of the state of charge of supercapacitors for renewable energy storage

查看全文 作  者:Jiajie [1]Lao;Peng [2]Sun;Fu [1,3]Liu;Xuejun [1]Zhang;Chuanxi [2]Zhao;Wenjie [2]Mai;Tuan [1]Guo;Gaozhi [4]Xiao;Jacques [3]Albert 高影响力作者 机构地区:[1]Guangdong Key Laboratory of Optical Fiber Sensing and Communications,Institute of Photonics Technology,Jinan University,Guangzhou,Guangdong 510632,People’s Republic of China;[2]Department of Physics,Siyuan Laboratory,Guangdong Provincial Engineering Technology Research Center of Vacuum Coating Technologies and New Energy Materials,Jinan University,Guangzhou,Guangdong 510632,People’s Republic of China;[3]Department of Electronics,Carleton University,Ottawa K1S 5B6,Canada;[4]Advanced Electronics and Photonics Research Center,National Research Council of Canada,Ottawa K1A 0R6,Canada高影响力机构 出  处:《Light(Science & Applications)》索引2018年第7卷第1期,共11页高影响力期刊 基  金:the support of the National Natural Science Foundation-Excellent Youth Foundation of China(No.61722505);the Guangdong Youth Science and Technology Innovation Talents of China(No.2014TQ01X539);the Guangzhou Key Collaborative Innovation Foundation of China(No.2016201604030084);the support of the Natural Science Foundation of China(51772135);the Ministry of Education of China(6141A02022516);the Natural Science Foundation of Guangdong Province(2014A030306010);the support of the Natural Sciences and Engineering Research Council of Canada(No.RGPIN 2014-05612);the Canada Research Chairs Program(No.950-217783). 摘  要:In situ and continuous monitoring of electrochemical activity is key to understanding and evaluating the operation mechanism and efficiency of energy storage devices.However,this task remains challenging.For example,the present methods are not capable of providing the real-time information about the state of charge(SOC)of the energy storage devices while in operation.To address this,a novel approach based on an electrochemical surface plasmon resonance(SPR)optical fiber sensor is proposed here.This approach offers the capability of in situ comprehensive monitoring of the electrochemical activity(the electrode potential and the SOC)of supercapacitors(used as an example).The sensor adopted is a tilted fiber Bragg grating imprinted in a commercial single-mode fiber and coated with a nanoscale gold film for high-efficiency SPR excitation.Unlike conventional“bulk”detection methods for electrode activity,our approach targets the“localized”(sub-μm-scale)charge state of the ions adjacent to the electrode interface of supercapacitors by monitoring the properties of the SPR wave on the fiber sensor surface located adjacent to the electrode.A stable and reproducible correlation between the real-time charge–discharge cycles of the supercapacitors and the optical transmission of the optical fiber has been found.Moreover,the method proposed is inherently immune to temperature cross-talk because of the presence of environmentally insensitive reference features in the optical transmission spectrum of the devices.Finally,this particular application is ideally suited to the fundamental qualities of optical fiber sensors,such as their compact size,flexible shape,and remote operation capability,thereby opening the way for other opportunities for electrochemical monitoring in various hard-to-reach spaces and remote environments. 关 键 词:fiber optical CHARGE
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