Copper-nanostructure-modified laser-scribed electrodes based on graphitic carbon for electrochemical detection of dopamine and glucose

被引:16
作者
Juska, Vuslat B. [1 ]
Juska, Gediminas [1 ]
机构
[1] Univ Coll Cork, Tyndall Natl Inst, Lee Maltings Complex, Cork T12 R5CP, Ireland
关键词
laser‐ scribed electrode; graphitic carbon; graphene; dopamine detection; glucose detection; RAMAN-SPECTROSCOPY; HIGH-PERFORMANCE; GRAPHENE; FABRICATION; OXIDATION; LAYERS; FILMS; DISK;
D O I
10.1002/jctb.6620
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
BACKGROUND Carbon-based nanostructures have been attracting major interest in many research fields, including chemical and biological sensing, because of their unique structural dimensions and excellent physical, chemical and mechanical properties. A recently developed laser scribing approach allows design and fabrication of flexible, graphitic carbon-based substrates for (bio-)electrochemical applications, as it provides highly robust and low-cost sensing platforms. RESULTS Here we demonstrate the fabrication of a highly reproducible laser-scribed graphitic electrode (LSE) on a polyimide (Kapton) film using a simple, do-it-yourself laser engraving system equipped with a 405 nm wavelength laser. Copper nanostructures were deposited onto an electrode surface via the electrodeposition process. The developed three-dimensional graphitic electrodes modified by nano copper/copper oxide species (LSE-Cu) were used for the detection of dopamine and glucose. Electrochemical studies of LSE-Cu showed that in the presence of nano-copper there is an apparent shift of the oxidation peaks of dopamine and ascorbic acid, allowing determination of dopamine without an interference effect, with an excellent sensitivity of 1321.54 mu A L mmol(-1) cm(-2). Furthermore, the LSE-Cu sensor exhibited highly satisfying analytical performance towards glucose electro-oxidation, with a reproducibility of 5.47% (RSD %). CONCLUSION We have demonstrated a simple design, fabrication and passivation route for the preparation of LSEs performing as biosensors. Such a cost-effective and design-flexible system is highly suitable for developing a biosensing platform towards various target analytes and further miniaturization of the electrode. (c) 2020 Society of Chemical Industry
引用
收藏
页码:1086 / 1095
页数:10
相关论文
共 44 条
[11]   An electrochemical biosensor based on the enhanced quasi-reversible redox signal of prussian blue generated by self-sacrificial label of iron metal-organic framework [J].
Cui, Lin ;
Hu, Juan ;
Li, Chen-chen ;
Wang, Cheng-ming ;
Zhang, Chun-yang .
BIOSENSORS & BIOELECTRONICS, 2018, 122 :168-174
[12]   In Situ Raman Spectroscopy of Copper and Copper Oxide Surfaces during Electrochemical Oxygen Evolution Reaction: Identification of CuIII Oxides as Catalytically Active Species [J].
Deng, Yilin ;
Handoko, Albertus D. ;
Du, Yonghua ;
Xi, Shibo ;
Yeo, Boon Siang .
ACS CATALYSIS, 2016, 6 (04) :2473-2481
[13]   Biochemical and clinical manifestations of dopamine-producing paragangliomas: Utility of plasma methoxytyramine [J].
Eisenhofer, G ;
Goldstein, DS ;
Sullivan, P ;
Csako, G ;
Brouwers, FM ;
Lai, EW ;
Adams, KT ;
Pacak, K .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2005, 90 (04) :2068-2075
[14]   Laser Scribing of High-Performance and Flexible Graphene-Based Electrochemical Capacitors [J].
El-Kady, Maher F. ;
Strong, Veronica ;
Dubin, Sergey ;
Kaner, Richard B. .
SCIENCE, 2012, 335 (6074) :1326-1330
[15]   Laser-Scribed Graphene Electrodes for Aptamer-Based Biosensing [J].
Fenzl, Christoph ;
Nayak, Pranati ;
Hirsch, Thomas ;
Wolfbeis, Otto S. ;
Alshareef, Husam N. ;
Baeumner, Antje J. .
ACS SENSORS, 2017, 2 (05) :616-620
[16]   Laser-scribed graphene presents an opportunity to print a new generation of disposable electrochemical sensors [J].
Griffiths, Katie ;
Dale, Carl ;
Hedley, John ;
Kowal, Matthew D. ;
Kaner, Richard B. ;
Keegan, Neil .
NANOSCALE, 2014, 6 (22) :13613-13622
[17]   Voltammetric selectivity conferred by the modification of electrodes using conductive porous layers or films: The oxidation of dopamine on glassy carbon electrodes modified with multiwalled carbon nanotubes [J].
Henstridge, Martin C. ;
Dickinson, Edmund J. F. ;
Aslanoglu, Mehmet ;
Batchelor-McAuley, Christopher ;
Compton, Richard G. .
SENSORS AND ACTUATORS B-CHEMICAL, 2010, 145 (01) :417-427
[18]   Determination of dopamine, serotonin, and their metabolites in pediatric cerebrospinal fluid by isocratic high performance liquid chromatography coupled with electrochemical detection [J].
Hubbard, K. Elaine ;
Wells, Amy ;
Owens, Thandranese S. ;
Tagen, Michael ;
Fraga, Charles H. ;
Stewart, Clinton F. .
BIOMEDICAL CHROMATOGRAPHY, 2010, 24 (06) :626-631
[19]   A Critical Review of Electrochemical Glucose Sensing: Evolution of Biosensor Platforms Based on Advanced Nanosystems [J].
Juska, Vuslat B. ;
Pemble, Martyn E. .
SENSORS, 2020, 20 (21) :1-28
[20]   A dual-enzyme, micro-band array biosensor based on the electrodeposition of carbon nanotubes embedded in chitosan and nanostructured Au-foams on microfabricated gold band electrodes [J].
Juska, Vuslat B. ;
Pemble, Martyn E. .
ANALYST, 2020, 145 (02) :402-414