Direct electrochemical bacterial sensor using ZnO nanorods disposable electrode

被引:13
作者
Al-Fandi, Mohamed Ghazi [1 ]
Alshraiedeh, Nid'a Hamdan [2 ]
Oweis, Rami Joseph [1 ]
Hayajneh, Rawan Hassan [3 ]
Alhamdan, Iman Riyad [3 ]
Alabed, Rama Adel [3 ]
Al-Rawi, Omar Farhan [4 ]
机构
[1] Jordan Univ Sci & Technol, Nanotechnol Inst, Irbid, Jordan
[2] Jordan Univ Sci & Technol, Sch Pharm, Irbid, Jordan
[3] Jordan Univ Sci & Technol, Micro & Nano Syst Lab, Irbid, Jordan
[4] Jordan Univ Sci & Technol, Dept Med Lab Sci, Irbid, Jordan
关键词
Bacteria detection; Disposable biosensor; Electrochemical detection; Zinc oxide nanorods; ANTIBACTERIAL ACTIVITY; GROWTH; ARRAYS;
D O I
10.1108/SR-06-2017-0117
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Purpose This paper aims to report a prototype of a reliable method for rapid, sensitive bacterial detection by using a low-cost zinc oxide nanorods (ZnONRs)-based electrochemical sensor. Design/methodology/approach The ZnONRs have been grown on the surface of a disposable, miniaturized working electrode (WE) using the low-temperature hydrothermal technique. Scanning electron microscopy and energy dispersion spectroscopy have been performed to characterize the distribution as well as the chemical composition of the ZnONRs on the surface, respectively. Moreover, the cyclic voltammetry test has been implemented to assess the effect of the ZnONRs on the signal conductivity between -1 V and 1 V with a scan rate of 0.01 V/s. Likewise, the effect of using different bacterial concentrations in phosphate-buffered saline has been investigated. Findings The morphological characterization has shown a highly distributed ZnONR on the WE with uneven alignment. Also, the achieved response time was about 12 minutes and the lower limit of detection was approximately 103 CFU abbreviation for Colony Forming Unit/mL. Originality/value This paper illustrates an outcome of an experimental work on a ZnONRs-based electrochemical biosensor for direct detection of bacteria.
引用
收藏
页码:326 / 334
页数:9
相关论文
共 28 条
  • [1] Highly stable hydrazine chemical sensor based on vertically-aligned ZnO nanorods grown on electrode
    Ahmad, Rafiq
    Tripathy, Nirmalya
    Ahn, Min-Sang
    Hahn, Yoon-Bong
    [J]. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2017, 494 : 153 - 158
  • [2] Al-Fandi M., 2015, IOP C SERIES MAT SCI, V92, P1
  • [3] Brad A.J., 2000, Electrochemical Methods: Fundamentals and Applications, V2nd
  • [4] Braga P. A., 2012, RSC ADV, V2012, P994
  • [5] DESIGN OF A MONOMERIC ARSINOGALLANE AND CHEMICAL CONVERSION TO GALLIUM-ARSENIDE
    BYRNE, EK
    PARKANYI, L
    THEOPOLD, KH
    [J]. SCIENCE, 1988, 241 (4863) : 332 - 334
  • [6] Nanomaterials based electrochemical sensors for biomedical applications
    Chen, Aicheng
    Chatterjee, Sanghamitra
    [J]. CHEMICAL SOCIETY REVIEWS, 2013, 42 (12) : 5425 - 5438
  • [7] Hydrogen sensing properties of Pt-Au bimetallic nanoparticles loaded on ZnO nanorods
    Fan, Faying
    Zhang, Jiajun
    Li, Jiao
    Zhang, Na
    Hong, RunRun
    Deng, Xiaochuan
    Tang, Pinggui
    Li, Dianqing
    [J]. SENSORS AND ACTUATORS B-CHEMICAL, 2017, 241 : 895 - 903
  • [8] MELTING IN SEMICONDUCTOR NANOCRYSTALS
    GOLDSTEIN, AN
    ECHER, CM
    ALIVISATOS, AP
    [J]. SCIENCE, 1992, 256 (5062) : 1425 - 1427
  • [9] Electrochemical biosensors -: Sensor principles and architectures
    Grieshaber, Dorothee
    MacKenzie, Robert
    Voeroes, Janos
    Reimhult, Erik
    [J]. SENSORS, 2008, 8 (03) : 1400 - 1458
  • [10] An Overview of Recent Strategies in Pathogen Sensing
    Heo, Jinseok
    Hua, Susan Z.
    [J]. SENSORS, 2009, 9 (06) : 4483 - 4502