Screen-Printed Electrodes Modified with “Green” Metals for Electrochemical Stripping Analysis of Toxic Elements
暂无分享,去创建一个
[1] E. Alocilja,et al. Electrochemical Immunosensor Using Nanoparticle-Based Signal Enhancement for Escherichia Coli O157:H7 Detection , 2015, IEEE Sensors Journal.
[2] Yonggang Zhu,et al. Determination of Lead(II) Using Screen‐Printed Bismuth‐Antimony Film Electrode , 2013 .
[3] A. Merkoçi,et al. Bismuth nanoparticles integration into heavy metal electrochemical stripping sensor , 2015, Electrophoresis.
[4] Juan A. Squella,et al. Vibrating screen printed electrode of gold nanoparticle-modified carbon nanotubes for the determination of arsenic(III) , 2014, Journal of Applied Electrochemistry.
[5] Núria Serrano,et al. Coating methods, modifiers and applications of bismuth screen-printed electrodes , 2013 .
[6] J Wang,et al. Mercury-free disposable lead sensors based on potentiometric stripping analysis at gold-coated screen-printed electrodes. , 1993, Analytical chemistry.
[7] A. Economou,et al. A study of in situ plated tin-film electrodes for the determination of trace metals by means of square-wave anodic stripping voltammetry , 2011 .
[8] M. Li,et al. A hybrid method combining an electrochemical technique and fluorescence measurement for the highly selective and sensitive detection of Cd2 , 2015 .
[9] Jonathan P. Metters,et al. Metallic modified (bismuth, antimony, tin and combinations thereof) film carbon electrodes. , 2015, The Analyst.
[10] Gyoung-Ja Lee,et al. Advanced Use of Nanobismuth/Nafion Electrode for Trace Analyses of Zinc, Cadmium, and Lead , 2010 .
[11] Karel Vytras,et al. Antimony film electrode for electrochemical stripping analysis. , 2007, Analytical chemistry.
[12] M. Esteban,et al. Antimony- based electrodes for analytical determinations , 2016 .
[13] Gyoung-Ja Lee,et al. Square-wave voltammetric determination of thallium using surface modified thick-film graphite electrode with Bi nanopowder , 2008 .
[14] J. Slater,et al. Flow injection measurement of lead using mercury-free disposable gold-sputtered screen-printed carbon electrodes (SPCE) , 2003 .
[15] F. Arduini,et al. Cadmium determination in natural water samples with an automatic multisyringe flow injection system coupled to a flow-through screen printed electrode. , 2012, Talanta.
[16] Orawon Chailapakul,et al. Electrochemical sensors for the simultaneous determination of zinc, cadmium and lead using a Nafion/ionic liquid/graphene composite modified screen-printed carbon electrode. , 2016, Analytica chimica acta.
[17] E. Richter,et al. On-site fuel electroanalysis: determination of lead, copper and mercury in fuel bioethanol by anodic stripping voltammetry using screen-printed gold electrodes. , 2014, Analytica chimica acta.
[18] Rashid O. Kadara,et al. Development of disposable bulk-modified screen-printed electrode based on bismuth oxide for stripping chronopotentiometric analysis of lead (II) and cadmium (II) in soil and water samples. , 2008, Analytica chimica acta.
[19] K. Brainina,et al. Novel approach to bismuth modifying procedure for voltammetric thick film carbon containing electrodes , 2007 .
[20] O. Chailapakul,et al. Method development for the determination of mercury(II) by sequential injection/anodic stripping voltammetry using an in situ gold-film screen-printed carbon electrode , 2014 .
[21] Rashid O. Kadara,et al. Disposable Bismuth Oxide Screen Printed Electrodes for the Sensing of Zinc in Seawater , 2010 .
[22] Jean-Louis Marty,et al. Disposable Screen Printed Electrochemical Sensors: Tools for Environmental Monitoring , 2014, Sensors.
[23] A. Economou,et al. Determination of Copper(II) Through Anodic Stripping Voltammetry in Tartrate Buffer Using an Antimony Film Screen-printed Carbon Electrode , 2017 .
[24] S. Cinti,et al. Hg2+ detection using a disposable and miniaturized screen-printed electrode modified with nanocomposite carbon black and gold nanoparticles , 2016, Environmental Science and Pollution Research.
[25] J. Hrbáč,et al. Determination of Cd and Zn with “green” screen-printed electrodes modified with instantly prepared sparked tin nanoparticles , 2017 .
[26] X. Lu,et al. A New Electrochemical System Based on a Flow-Field Shaped Solid Electrode and 3D-Printed Thin-Layer Flow Cell: Detection of Pb2+ Ions by Continuous Flow Accumulation Square-Wave Anodic Stripping Voltammetry. , 2017, Analytical chemistry.
[27] E. Gil,et al. Modification of carbon screen-printed electrodes by adsorption of chemically synthesized Bi nanoparticles for the voltammetric stripping detection of Zn(II), Cd(II) and Pb(II). , 2009, Talanta.
[28] Constant M.G. van den Berg,et al. Potentials and potentialities of cathodic stripping voltammetry of trace elements in natural waters , 1991 .
[29] H. Soares,et al. Multi-element determination of metals and metalloids in waters and wastewaters, at trace concentration level, using electroanalytical stripping methods with environmentally friendly mercury free-electrodes: A review. , 2017, Talanta.
[30] P. Petrou,et al. Quantum dot-based electrochemical DNA biosensor using a screen-printed graphite surface with embedded bismuth precursor , 2015 .
[31] G. Palleschi,et al. Part two: Analytical optimisation of a procedure for lead detection in milk by means of bismuth-modified screen-printed electrodes. , 2012, Analytica chimica acta.
[32] A. Amine,et al. Stripping voltammetric determination of mercury(II) and lead(II) using screen-printed electrodes modified with gold films, and metal ion preconcentration with thiol-modified magnetic particles , 2010 .
[33] A. Economou,et al. Voltammetric determination of trace Tl(I) at disposable screen-printed electrodes modified with bismuth precursor compounds , 2013 .
[34] Hong Qun Luo,et al. Simultaneous determination of chromium(III) and cadmium(II) by differential pulse anodic stripping voltammetry on a stannum film electrode. , 2007, Talanta.
[35] Rashid O. Kadara,et al. Disposable Bismuth Oxide Screen Printed Electrodes for the High Throughput Screening of Heavy Metals , 2009 .
[36] M. Esteban,et al. Can bismuth film screen printed carbon electrodes be used to study complexation? , 2013, Talanta.
[37] E. Alocilja,et al. A multiplex nanoparticle-based bio-barcoded DNA sensor for the simultaneous detection of multiple pathogens. , 2010, Biosensors & bioelectronics.
[38] A. Economou,et al. Novel screen-printed antimony and tin voltammetric sensors for anodic stripping detection of Pb(II) and Cd(II) , 2013 .
[39] A. K. Sakira,et al. Determination of groundwater mercury (II) content using a disposable gold modified screen printed carbon electrode. , 2016, Talanta.
[40] C. Brett,et al. Electrochemical Characterization of and Stripping Voltammetry at Screen Printed Electrodes Modified with Different Brands of Multiwall Carbon Nanotubes and Bismuth Films , 2012 .
[41] Chi-Chang Hu,et al. Green electrode for Pb2+ sensing based on the Nafion-graphene/CNT composite , 2012, 2012 IEEE Sensors.
[42] K. Tyszczuk‐Rotko,et al. Simple and Sensitive Voltammetric Procedure for Determination of Cd(II) and Pb(II) Using Bismuth-Coated Screen-Printed Carbon Electrode Prepared with Mediator , 2017 .
[43] Abul Hussam,et al. Voltammetric methods for determination and speciation of inorganic arsenic in the environment--a review. , 2009, Analytica chimica acta.
[44] J. Masini,et al. Sequential Injection Assisted Stripping Chronopotentiometry at Screen Printed Gold Electrodes for Determination of Hg(II) in Adsorption Studies , 2016 .
[45] Wei Wang,et al. Paper disk on screen printed electrode for one-step sensing with an internal standard. , 2010, Analytical chemistry.
[46] Hui Wang,et al. A Portable Electrochemical workstation using Disposable Screen-Printed Carbon Electrode decorated with Multiwall Carbon Nanotube-Ionic Liquid and Bismuth Film for Cd(II) and Pb(II) Determination , 2017 .
[47] Won-Kyu Han,et al. An electrochemical sensor based on the reduction of screen-printed bismuth oxide for the determination of trace lead and cadmium , 2008 .
[48] E. Gil,et al. High‐Throughput Mercury Monitoring in Indoor Dust Microsamples by Bath Ultrasonic Extraction and Anodic Stripping Voltammetry on Gold Nanoparticles‐Modified Screen‐Printed Electrodes , 2013 .
[49] O. Chailapakul,et al. Method development for the determination of arsenic by sequential injection/anodic stripping voltammetry using long-lasting gold-modified screen-printed carbon electrode. , 2013, Talanta.
[50] Chen Chen,et al. Review: Electrochemical Stripping Analysis of Trace Heavy Metals Using Screen-Printed Electrodes , 2013 .
[51] Voltammetric determination of size and particle concentration of Cd-based quantum dots , 2015 .
[52] Anastasios Economou,et al. Bismuth-film electrodes: recent developments and potentialities for electroanalysis , 2005 .
[53] Orawon Chailapakul,et al. On-line preconcentration and determination of lead and cadmium by sequential injection/anodic stripping voltammetry. , 2012, Talanta.
[54] J. Masini,et al. Complexation of Hg(II) by humic acid studied by square wave stripping voltammetry at screen-printed gold electrodes. , 2012, Talanta: The International Journal of Pure and Applied Analytical Chemistry.
[55] John P. Hart,et al. Recent Advances in the Fabrication and Application of Screen-Printed Electrochemical (Bio)Sensors Based on Carbon Materials for Biomedical, Agri-Food and Environmental Analyses , 2016, Biosensors.
[56] George M Whitesides,et al. Electrochemical sensing in paper-based microfluidic devices. , 2010, Lab on a chip.
[57] A. Economou,et al. Emerging trends in biosensing using stripping voltammetric detection of metal-containing nanolabels - A review. , 2017, Analytica chimica acta.
[58] Roberto María-Hormigos,et al. Disposable screen-printed electrode modified with bismuth–PSS composites as high sensitive sensor for cadmium and lead determination , 2016 .
[59] D. Akretche,et al. A miniaturized bismuth-based sensor to evaluate the marine organism Styela plicata bioremediation capacity toward heavy metal polluted seawater. , 2017, The Science of the total environment.
[60] Mamas I. Prodromidis,et al. Preparation of Screen-Printed Compatible Bismuth-Modified Sol-Gel Microspheres: Application to the Stripping Voltammetric Determination of Lead and Cadmium , 2016 .
[61] M. Esteban,et al. Sputtered bismuth screen-printed electrode: a promising alternative to other bismuth modifications in the voltammetric determination of Cd(II) and Pb(II) ions in groundwater. , 2014, Talanta.
[62] Orawon Chailapakul,et al. An electrochemical sensor based on graphene/polyaniline/polystyrene nanoporous fibers modified electrode for simultaneous determination of lead and cadmium , 2015 .
[63] Clara Pérez-Ràfols,et al. A screen-printed voltammetric electronic tongue for the analysis of complex mixtures of metal ions , 2017 .
[64] E. Alocilja,et al. Nanoparticle-Based Biobarcoded DNA Sensor for the Rapid Detection of pagA Gene of Bacillus Anthracis , 2011, IEEE Transactions on Nanotechnology.
[65] E. Pinilla-Gil,et al. Disposable sputtered-bismuth screen-printed sensors for voltammetric monitoring of cadmium and lead in atmospheric particulate matter samples. , 2017, Talanta.
[66] Joseph Wang,et al. Stripping Analysis at Bismuth Electrodes: A Review , 2005 .
[67] Diego P. Rocha,et al. Stripping Voltammetric Determination of Mercury in Fish Oil Capsules Using a Screen-printed Gold Electrode , 2018 .
[68] E. Iwuoha,et al. Screen-printed carbon electrodes modified with a bismuth film for stripping voltammetric analysis of platinum group metals in environmental samples , 2014 .
[69] P. Trikalitis,et al. Disposable screen-printed sensors modified with bismuth precursor compounds for the rapid voltammetric screening of trace Pb(II) and Cd(II). , 2012, Analytica chimica acta.
[70] R. Faria,et al. A thermostated electrochemical flow cell with a coupled bismuth film electrode for square-wave anodic stripping voltammetric determination of cadmium(II) and lead(II) in natural, wastewater and tap water samples. , 2014, Talanta.
[71] R. Metelka,et al. Comparison of various bismuth film electrodes in simultaneous electrochemical detection of heavy metals for application in quantum dot-linked immunoassays , 2017, Monatshefte für Chemie - Chemical Monthly.
[72] M. Esteban,et al. Simultaneous determination of Tl(I) and In(III) using a voltammetric sensor array , 2017 .
[73] Xiangheng Niu,et al. Novel Screen-Printed Gold Nano Film Electrode for Trace Mercury(II) Determination Using Anodic Stripping Voltammetry , 2012 .
[74] L. Fu,et al. Facile and Simultaneous Stripping Determination of Zinc, Cadmium and Lead on Disposable Multiwalled Carbon Nanotubes Modified Screen‐Printed Electrode , 2013 .
[75] M. Esteban,et al. Stripping Chronopotentiometry in Environmental Analysis , 2007 .
[76] Christos Kokkinos and Anastasios Economou,et al. Stripping Analysis at Bismuth-Based Electrodes , 2008 .
[77] E. Gil,et al. Gold nanoparticles-modified screen-printed carbon electrodes for anodic stripping voltammetric determination of mercury in ambient water samples , 2012 .
[78] Carlo Dossi,et al. Exploiting Chemistry to Improve Performance of Screen-Printed, Bismuth Film Electrodes (SP-BiFE) , 2016, Biosensors.
[79] Yibin Ying,et al. Development of an electrochemically reduced graphene oxide modified disposable bismuth film electrode and its application for stripping analysis of heavy metals in milk. , 2014, Food chemistry.
[80] Joseph Wang,et al. A Decade with Bismuth‐Based Electrodes in Electroanalysis , 2010 .
[81] L. Vidal,et al. Mercury determination in urine samples by gold nanostructured screen-printed carbon electrodes after vortex-assisted ionic liquid dispersive liquid-liquid microextraction. , 2016, Analytica chimica acta.
[82] Orawon Chailapakul,et al. Multilayer paper-based device for colorimetric and electrochemical quantification of metals. , 2014, Analytical chemistry.
[83] Jianshan Ye,et al. A screen-printed carbon electrode modified with a bismuth film and gold nanoparticles for simultaneous stripping voltammetric determination of Zn(II), Pb(II) and Cu(II) , 2017, Microchimica Acta.
[84] I. Tothill,et al. Development and characterisation of disposable gold electrodes, and their use for lead(II) analysis , 2006, Analytical and bioanalytical chemistry.
[85] Joshua Ray Windmiller,et al. Wearable electrochemical sensors for in situ analysis in marine environments. , 2011, The Analyst.
[86] Gang Liu,et al. Electrochemical determination of lead and cadmium in rice by a disposable bismuth/electrochemically reduced graphene/ionic liquid composite modified screen-printed electrode , 2014 .
[87] M. B. González-García,et al. Electrochemical immunosensor for anti-tissue transglutaminase antibodies based on the in situ detection of quantum dots. , 2014, Talanta.
[88] A. Zarębski. Catalytic Adsorptive Stripping Voltammetry at Film Electrodes , 2008 .
[89] Khris B. Olsen,et al. Stripping analysis into the 21st century: faster, smaller, cheaper, simpler and better , 1999 .
[90] Joseph Wang. Chapter 6 Stripping-based electrochemical metal sensors for environmental monitoring , 2007 .
[91] Jan Hrbáč,et al. Green and facile electrode modification by spark discharge: Bismuth oxide-screen printed electrodes for the screening of ultra-trace Cd(II) and Pb(II) , 2015 .
[92] K Z Brainina,et al. Stripping voltammetry in environmental and food analysis , 2000, Fresenius' journal of analytical chemistry.
[93] M. Medina‐Sánchez,et al. Enhanced detection of quantum dots labeled protein by simultaneous bismuth electrodeposition into microfluidic channel , 2016, Electrophoresis.
[94] A. Roig,et al. Screen-printed electrodes made of a bismuth nanoparticle porous carbon nanocomposite applied to the determination of heavy metal ions , 2016, Microchimica Acta.
[95] O. Chailapakul,et al. Graphene Oxide-Modified Electrode Coated with in-situ Antimony Film for the Simultaneous Determination of Heavy Metals by Sequential Injection-Anodic Stripping Voltammetry , 2017 .
[96] Anastasios Voulgaropoulos,et al. Applications of adsorptive stripping voltammetry in the determination of trace and ultratrace metals , 1993 .
[97] Núria Serrano,et al. Antimony film screen-printed carbon electrode for stripping analysis of Cd(II), Pb(II), and Cu(II) in natural samples. , 2015, Analytica chimica acta.
[98] Xiangheng Niu,et al. Disposable screen-printed antimony film electrode modified with carbon nanotubes/ionic liquid for electrochemical stripping measurement , 2011 .
[99] Ilaria Palchetti,et al. Gold-based screen-printed sensor for detection of trace lead , 2006 .
[100] A. Bobrowski,et al. Employing a magnetic field to amplify zinc signal obtained at bismuth film screen-printed electrodes generated using dual bismuth precursor , 2016 .
[101] Joseph Wang,et al. Stripping Analysis: Principles, Instrumentation, and Applications , 1985 .
[102] M. Esteban,et al. Voltammetric Determination of Pb(II) and Cd(II) Ions in Well Water Using a Sputtered Bismuth Screen-Printed Electrode , 2014 .
[103] D. Moscone,et al. Disposable electrochemical sensor to evaluate the phytoremediation of the aquatic plant Lemna minor L. toward Pb(2+) and/or Cd(2+). , 2014, Environmental science & technology.
[104] M. Marco,et al. Electrochemical coding strategies using metallic nanoprobes for biosensing applications , 2016 .
[105] M. Esteban,et al. Determination of Sb(III) using an ex-situ bismuth screen-printed carbon electrode by adsorptive stripping voltammetry. , 2016, Talanta.
[106] M. Esteban,et al. Ex-situ antimony screen-printed carbon electrode for voltammetric determination of Ni(II) - ions in wastewater , 2016 .
[107] R. Metelka,et al. Macroporous Bismuth Film Screen‐Printed Carbon Electrode for Simultaneous Determination of Ni(II) and Co(II) , 2015 .
[108] Joseph Wang,et al. Screen-printed electrodes for stripping measurements of trace mercury , 1993 .
[109] Gyoung-Ja Lee,et al. Highly sensitive electrochemical sensor based on bismuth nanopowders for detecting heavy metals and uranium , 2014, IEEE SENSORS 2014 Proceedings.
[110] W. Jin,et al. Advanced nanomaterial inks for screen-printed chemical sensors , 2017 .
[111] M. B. González-García,et al. Use of nanohybrid materials as electrochemical transducers for mercury sensors , 2012 .
[112] C. Chen,et al. Bismuth-based porous screen-printed carbon electrode with enhanced sensitivity for trace heavy metal detection by stripping voltammetry , 2013 .
[113] A. Murzakaev,et al. Bismuth nanoparticles in adsorptive stripping voltammetry of nickel , 2011 .
[114] Dermot Diamond,et al. Screen-printed electrodes for environmental monitoring of heavy metal ions: a review , 2016, Microchimica Acta.
[115] A. E. Ermakov,et al. A voltammetric sensor on the basis of bismuth nanoparticles prepared by the method of gas condensation , 2010 .
[116] Sirajuddin,et al. Nafion stabilized ibuprofen–gold nanostructures modified screen printed electrode as arsenic(III) sensor , 2012 .
[117] Gyoung-Ja Lee,et al. Bismuth nano-powder electrode for trace analysis of heavy metals using anodic stripping voltammetry , 2007 .
[118] Lu,et al. Bismuth-coated carbon electrodes for anodic stripping voltammetry , 2000, Analytical chemistry.
[119] Katherine E. Boehle,et al. Electrochemistry on Paper‐based Analytical Devices: A Review , 2016 .
[120] G. Palleschi,et al. Stripping Analysis of As(III) by Means of Screen‐Printed Electrodes Modified with Gold Nanoparticles and Carbon Black Nanocomposite , 2014 .
[121] M. Esteban,et al. Determination of Pd(II) using an antimony film coated on a screen-printed electrode by adsorptive stripping voltammetry. , 2017, Talanta: The International Journal of Pure and Applied Analytical Chemistry.
[122] E. Neyman,et al. Electroanalytical stripping methods , 1993 .
[123] M. B. González-García,et al. Electrochemical determination of mercury: a review. , 2013, Talanta.