
Citation: LI Xin-Yu, ZHANG Qiang, WANG Ni, LIU Jia-Jun, WANG Jian. Cu2+-mediated Fluorescence Switching of Graphene Quantum Dots for Highly Selective Detection of Glutathione[J]. Chinese Journal of Analytical Chemistry, 2020, 48(3): 339-346. doi: 10.19756/j.issn.0253-3820.191493

铜离子介导的石墨烯量子点荧光开-关高选择性检测谷胱甘肽
English
Cu2+-mediated Fluorescence Switching of Graphene Quantum Dots for Highly Selective Detection of Glutathione
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Key words:
- Graphene quantum dots
- / Glutathione
- / Copper ions
- / Fluorescence switching
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[1]
Han X Y, Song X Y, Yu F B, Chen L X. Chem. Sci.,2017,8(10):6991-7002
-
[2]
Steinmeier J, Dringen R. Neurochem. Res.,2019,44(5):1167-1181
-
[3]
WANG Jing-Li, ZHAO Lin-Xiang, JING Yong-Kui. Chinese J. Med. Chem.,2003,13(6):361-366 王静丽, 赵临襄, 景永奎.中国药物化学杂志,2003,13(6):361-366
-
[4]
Ge J, Huang Z M, Xi Q, Yu R Q, Jiang J H, Chu X. Chem. Commun.,2014,50(80):11879-11882
-
[5]
Chen Z G, Wang Z, Chen J H, Wang S B, Huang X P. Analyst,2012,137(13):3132-3137
-
[6]
Zou H Y, Yang T, Lan J, Huang C Z. Anal. Methods, 2017,9(5):841-846
-
[7]
Tomei M R, Cinti S, Interino N, Manovella V, Moscone D, Arduini F. Sens. Actuators B, 2019,294:291-297
-
[8]
Bayram B, Runbach G, Frank J, Esatbeyoglu T. J. Agric. Food Chem.,2014,62(2):402-408
-
[9]
Sudeep P K, Joseph S T S, Thomas K G. J. Am. Chem. Soc.,2005,127(18):6516-6517
-
[10]
Yuan D, Liu J J, Yan H H, Li C M, Huang C Z, Wang J. Talanta,2019,203:220-226
-
[11]
Zhang L, Zhang Z Y, Liang R P, Li Y H, Qiu J D. Anal. Chem., 2014,86(9):4423-4430
-
[12]
Liu M L, Chen B B, Li C M, Huang C Z. Green Chem.,2019,21(3):449-471
-
[13]
Mhetaer Tuerhong, XU Yang, YIN Xue-Bo, Chinese J. Anal. Chem.,2017,45(1):139-150 木合塔尔·吐尔洪, 徐阳, 尹学博.分析化学,2017,45(1):139-150
-
[14]
LI Ying, XU Wen-Kai, LI Ping, ZHU Xiao-Xue, HUANG Yan-Feng, ZHANG Ji-Mei. Chinese J. Anal. Chem.,2018,46(7):1047-1054 李颖, 徐文凯, 李苹, 朱小雪, 黄艳凤, 张纪梅.分析化学,2018,46(7):1047-1054
-
[15]
Wang J, Li R S, Zhang H Z, Wang N, Zhang Z, Huang C Z. Biosens. Bioelectron.,2017,97:157-163
-
[16]
Wu Z L, Zhang P, Gao M X, Liu C F, Wang W, Leng F, Huang C Z. J. Mater. Chem. B,2013,1(22):2868-2873
-
[17]
Wang J, Chang Y, Zhang P, Lie S Q, Gao P F, Huang C Z. Analyst,2015,140(24):8194-8200
-
[18]
Wang N, Liu Z X, Li R S, Zhang H Z, Huang C Z, Wang J. J. Mater. Chem. B,2017,5(31):6394-6399
-
[19]
Zhang H J, Chen J, Yang Y L, Wang L, Li Z, Qiu H D. Anal. Chem.,2019,91(8):5004-5010
-
[20]
Liu M L, Chen B B, He J H, Li C M, Li Y F, Huang C Z. Talanta,2019, 191:443-448
-
[21]
Liu M L, Yang L, Li R S, Chen B B, Liu H, Huang C Z. Green Chem.,2017,19(15):3611-3617
-
[22]
Lin M, Zou H Y, Yang T, Liu Z X, Liu H, Huang C Z. Nanoscale,2016,8(5):2999-3007
-
[23]
Vedamalai M, Periasamy A P, Wang C W, Tseng Y T, Ho L C, Shih C C, Chang H T. Nanoscale,2014,6(21):13119-13125
-
[24]
Hu Y, Heo C H, Kim G, Jun E J, Yin J, Kim H M, Yoon J. Anal. Chem.,2015,87(6):3308-3313
-
[25]
Shi Y, Pan Y, Zhang H, Zhang Z, Li M J, Yi C, Yang M. Biosens. Bioelectron.,2014,56:39-45
-
[26]
Liang W, Zhao Z, Zhang Y, Wang Q, Zhao X, Ouyang J. J. Luminesc.,2012,132(5):1160-1165
-
[27]
Huang Y F, Chang H T. Anal. Chem.,2007,79(13):4852-4859
-
[28]
Dong Y, Wang R, Li G, Chen C, Chi Y, Chen G. Anal. Chem.,2012,84(14):6220-6224
-
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