362
Views
30
CrossRef citations to date
0
Altmetric
ELECTROCHEMISTRY

Direct Electrochemistry of Glucose Oxidase at a Gold Electrode Modified with Graphene Nanosheets

, , , &
Pages 746-753 | Received 22 Jan 2011, Accepted 18 Aug 2011, Published online: 08 May 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Fuqin Li, Chuanxiao Yang, Bin Liu & Xiangying Sun. (2013) Properties of a Graphene Oxide-Balofloxacin Composite and Its Effect on Bacteriostasis. Analytical Letters 46:14, pages 2279-2289.
Read now

Articles from other publishers (29)

Huang Dai, Xuyue Wu, Shuo Duan, Zhanming Li, Qi Zhang, Yafang Shen, Jie Bi, Zaixi Shu, Anhong Xiao, Fuwei Pi, Xiaodan Liu & Jiahua Wang. (2023) An electrochemical sensor based on curcumin-encapsulated zeolitic imidazolate framework-8 for the sensitive determination of aflatoxin B1 in grain products. Microchemical Journal 191, pages 108852.
Crossref
Ayu Triastuti, Salma Nur Zakiyyah, Shabarni Gaffar, Isa Anshori, Akhmadi Surawijaya, Darmawan Hidayat, Hesti Lina Wiraswati, Muhammad Yusuf & Yeni Wahyuni Hartati. (2023) CeO 2 @NH 2 functionalized electrodes for the rapid detection of SARS-CoV-2 spike receptor binding domain . RSC Advances 13:9, pages 5874-5884.
Crossref
Qian-Qian Xu, Lan Luo, Zhong-Gang Liu, Zheng Guo & Xing-Jiu Huang. (2023) Highly sensitive and selective serotonin (5-HT) electrochemical sensor based on ultrafine Fe3O4 nanoparticles anchored on carbon spheres. Biosensors and Bioelectronics 222, pages 114990.
Crossref
Sylwia Baluta, Marta Romaniec, Kinga Halicka-Stępień, Michalina Alicka, Aleksandra Pieła, Katarzyna Pala & Joanna Cabaj. (2023) A Novel Strategy for Selective Thyroid Hormone Determination Based on an Electrochemical Biosensor with Graphene Nanocomposite. Sensors 23:2, pages 602.
Crossref
Prabhjot Singh, Satish Kumar Pandey & Nishima Wangoo. 2023. Enzyme-based Biosensors: Recent Advances and Applications in Healthcare. Enzyme-based Biosensors: Recent Advances and Applications in Healthcare 109 126 .
Yi Xu, Chenguang Wang, Gang Liu, Xiaoshuang Zhao, Qiuling Qian, Shuainai Li & Xianqiang Mi. (2022) Tetrahedral DNA framework based CRISPR electrochemical biosensor for amplification-free miRNA detection. Biosensors and Bioelectronics 217, pages 114671.
Crossref
Zhenxing Wang, Hongli Zhao, Kaicha Chen, Fangfang Zhou, Shlomo Magdassi & Minbo Lan. (2022) Two-dimensional mesoporous nitrogen-rich carbon nanosheets loaded with CeO2 nanoclusters as nanozymes for the electrochemical detection of superoxide anions in HepG2 cells. Biosensors and Bioelectronics 209, pages 114229.
Crossref
Xinmei Song, Huahui Gao, Ruo Yuan & Yun Xiang. (2022) Trimetallic nanoparticle-decorated MXene nanosheets for catalytic electrochemical detection of carcinoembryonic antigen via Exo III-aided dual recycling amplifications. Sensors and Actuators B: Chemical 359, pages 131617.
Crossref
Shichao Zhang, Feng Gao, Wei Feng, Huihui Yang, Yunxia Hu, Jia Zhang, Haiying Xiao, Zhonghua Li & PingAn Hu. (2021) High-responsivity photodetector based on scrolling monolayer MoS 2 hybridized with carbon quantum dots . Nanotechnology 33:10, pages 105301.
Crossref
Sónia O. Pereira, Nuno F. Santos, Alexandre F. Carvalho, António J. S. Fernandes & Florinda M. Costa. (2021) Electrochemical Response of Glucose Oxidase Adsorbed on Laser-Induced Graphene. Nanomaterials 11:8, pages 1893.
Crossref
Xiansen He, Xiaokun Li, Suxiang Feng, Xueying Li & Cuijie Nong. (2021) Fabrication of Photoelectrochemical Sensor Based on Fe-Doped MoSe 2 for the Sensitive Detection of Berberine Hydrochloride . Journal of The Electrochemical Society 168:5, pages 056523.
Crossref
Daniel J. Denmark, Subhra Mohapatra & Shyam S. Mohapatra. (2020) Point-of-Care Diagnostics: Molecularly Imprinted Polymers and Nanomaterials for Enhanced Biosensor Selectivity and Transduction. The EuroBiotech Journal 4:4, pages 184-206.
Crossref
Chenlin Lu, Zhipeng Li, Liwei Ren, Nan Su, Diannan Lu & Zheng Liu. (2019) In Situ Oxidation of Cu2O Crystal for Electrochemical Detection of Glucose. Sensors 19:13, pages 2926.
Crossref
Trupti Terse-Thakoor, Sushmee Badhulika & Ashok Mulchandani. (2017) Graphene based biosensors for healthcare. Journal of Materials Research 32:15, pages 2905-2929.
Crossref
Trupti Terse-Thakoor, Kikuo Komori, Pankaj Ramnani, Ilkeun Lee & Ashok Mulchandani. (2015) Electrochemically Functionalized Seamless Three-Dimensional Graphene-Carbon Nanotube Hybrid for Direct Electron Transfer of Glucose Oxidase and Bioelectrocatalysis. Langmuir 31:47, pages 13054-13061.
Crossref
Shu Zhang, Lei Han, Chuantao Hou, Cuncheng Li, Qiaolin Lang, Lihui Han & Aihua Liu. (2015) Novel glucose sensor with Au@Ag heterogeneous nanorods based on electrocatalytic reduction of hydrogen peroxide at negative potential. Journal of Electroanalytical Chemistry 742, pages 84-89.
Crossref
Fengjin Qu, Xiaoyan Ma, Yuchen Hui, Xiuzhang Hou, Jie Yu, Qilu Zhang & Fang Chen. (2014) Fabrication of Dual-Path Electron Transfer Electrode for Electrochemical Glucose Sensing. Journal of The Electrochemical Society 162:1, pages B27-B35.
Crossref
Stephan Vogt, Marcel Schneider, Heiko Schäfer-Eberwein & Gilbert Nöll. (2014) Determination of the pH Dependent Redox Potential of Glucose Oxidase by Spectroelectrochemistry. Analytical Chemistry 86:15, pages 7530-7535.
Crossref
Jiarui Huang, Liyou Wang, Chengcheng Shi, Yijuan Dai, Cuiping Gu & Jinhuai Liu. (2014) Selective detection of picric acid using functionalized reduced graphene oxide sensor device. Sensors and Actuators B: Chemical 196, pages 567-573.
Crossref
Jing Zou, Jinai Ma, Yuanxiao Zhang, Lei Huang & Qijin Wan. (2013) A hydroquinone sensor based on a new nanocrystals modified electrode. Journal of Chemical Technology & Biotechnology 89:2, pages 259-264.
Crossref
Xinghua Li, Haibo Yi, Junwei Zhang, Juan Feng, Fashen Li, Desheng Xue, Haoli Zhang, Yong Peng & Nigel J. Mellors. (2013) Fe3O4–graphene hybrids: nanoscale characterization and their enhanced electromagnetic wave absorption in gigahertz range. Journal of Nanoparticle Research 15:3.
Crossref
Hani Nasser Abdelhamid & Hui-Fen Wu. (2013) Multifunctional graphene magnetic nanosheet decorated with chitosan for highly sensitive detection of pathogenic bacteria. Journal of Materials Chemistry B 1:32, pages 3950.
Crossref
Karin Gotterbarm, Wei Zhao, Oliver Höfert, Christoph Gleichweit, Christian Papp & Hans-Peter Steinrück. (2013) Growth and oxidation of graphene on Rh(111). Physical Chemistry Chemical Physics 15:45, pages 19625.
Crossref
Shumao Cui, Shun Mao, Zhenhai Wen, Jingbo Chang, Yang Zhang & Junhong Chen. (2013) Controllable synthesis of silver nanoparticle-decorated reduced graphene oxide hybrids for ammonia detection. The Analyst 138:10, pages 2877.
Crossref
Chao Chen, Qingji Xie, Dawei Yang, Hualing Xiao, Yingchun Fu, Yueming Tan & Shouzhuo Yao. (2013) Recent advances in electrochemical glucose biosensors: a review. RSC Advances 3:14, pages 4473.
Crossref
Chueh-Han Wang, Cheng-Hung Wu, Jia-Wun Wu, Ming-Tsung Lee, Jeng-Kuei Chang, Ming-Der Ger & Chia-Liang Sun. (2013) The effects of ionic liquid on the electrochemical sensing performance of graphene- and carbon nanotube-based electrodes. The Analyst 138:2, pages 576-582.
Crossref
Mei Yang, Jun Yao & Yixiang Duan. (2013) Graphene and its derivatives for cell biotechnology. The Analyst 138:1, pages 72-86.
Crossref
Hongfen Zhang, Yujie Han, Yujing Guo & Chuan Dong. (2012) Porphyrin functionalized graphene nanosheets-based electrochemical aptasensor for label-free ATP detection. Journal of Materials Chemistry 22:45, pages 23900.
Crossref
Cheng-Hung Wu, Chueh-Han Wang, Ming-Tsung Lee & Jeng-Kuei Chang. (2012) Unique Pd/graphene nanocomposites constructed using supercritical fluid for superior electrochemical sensing performance. Journal of Materials Chemistry 22:40, pages 21466.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.