Monodispersed Au nanoparticles decorated graphene as an enhanced sensing platform for ultrasensitive stripping voltammetric detection of mercury(II)
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Jingming Gong | Lizhi Zhang | T. Zhou | Dandan Song | Dandan Song | Ting Zhou | Lizhi Zhang | Jingming Gong
[1] R. B. Rakhi,et al. Metal decorated graphene nanosheets as immobilization matrix for amperometric glucose biosensor , 2010 .
[2] Xianluo Hu,et al. Design, fabrication, and modification of nanostructured semiconductor materials for environmental and energy applications. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[3] N. Koratkar,et al. Fracture and fatigue in graphene nanocomposites. , 2010, Small.
[4] Xianluo Hu,et al. Stripping voltammetric detection of mercury(II) based on a bimetallic Au-Pt inorganic-organic hybrid nanocomposite modified glassy carbon electrode. , 2010, Analytical chemistry.
[5] R. Kaner,et al. Honeycomb carbon: a review of graphene. , 2010, Chemical reviews.
[6] N. Koratkar,et al. Enhanced mechanical properties of nanocomposites at low graphene content. , 2009, ACS nano.
[7] Y. Tsai,et al. Graphene modified basal and edge plane pyrolytic graphite electrodes for electrocatalytic oxidation of hydrogen peroxide and β-nicotinamide adenine dinucleotide , 2009 .
[8] Xiaobo Zhang,et al. One-step fabrication of three-dimensional porous calcium carbonate–chitosan composite film as the immobilization matrix of acetylcholinesterase and its biosensing on pesticide , 2009 .
[9] W. Qin,et al. Nanomaterial/ionophore-based electrode for anodic stripping voltammetric determination of lead: an electrochemical sensing platform toward heavy metals. , 2009, Analytical chemistry.
[10] S. Dong,et al. Electrochemical sensing and biosensing platform based on chemically reduced graphene oxide. , 2009, Analytical chemistry.
[11] Ying Wang,et al. Application of graphene-modified electrode for selective detection of dopamine , 2009 .
[12] Huafeng Yang,et al. Direct electrochemistry of glucose oxidase and biosensing for glucose based on graphene. , 2009, Analytical chemistry.
[13] B. H. Weiller,et al. Practical chemical sensors from chemically derived graphene. , 2009, ACS nano.
[14] G. Shi,et al. Microwave-radiated synthesis of gold nanoparticles/carbon nanotubes composites and its application to voltammetric detection of trace mercury(II) , 2008 .
[15] G. Shi,et al. Highly ordered platinum-nanotube arrays for oxidative determination of trace arsenic(III) , 2008 .
[16] N. Mohanty,et al. Graphene-based single-bacterium resolution biodevice and DNA transistor: interfacing graphene derivatives with nanoscale and microscale biocomponents. , 2008, Nano letters.
[17] A. Sabarudin,et al. Synthesis of chitosan-based resins modified with tris(2-aminoethyl)amine moiety and its application to collection/concentration and determination of trace mercury by inductively coupled plasma atomic emission spectrometry. , 2008, Talanta.
[18] Zhongqing Wei,et al. Reduced graphene oxide molecular sensors. , 2008, Nano letters.
[19] Royce W Murray,et al. Nanoelectrochemistry: metal nanoparticles, nanoelectrodes, and nanopores. , 2008, Chemical reviews.
[20] R. Du,et al. Chitosan Nanostructures with Controllable Morphology Produced by a Nonaqueous Electrochemical Approach , 2008 .
[21] B. Jena,et al. Gold nanoelectrode ensembles for the simultaneous electrochemical detection of ultratrace arsenic, mercury, and copper. , 2008, Analytical chemistry.
[22] G. Wallace,et al. Processable aqueous dispersions of graphene nanosheets. , 2008, Nature nanotechnology.
[23] G. Swain,et al. Development of a method for total inorganic arsenic analysis using anodic stripping voltammetry and a Au-coated, diamond thin-film electrode. , 2007, Analytical chemistry.
[24] Xuan Dai,et al. Electroanalysis using macro-, micro-, and nanochemical architectures on electrode surfaces. Bulk surface modification of glassy carbon microspheres with gold nanoparticles and their electrical wiring using carbon nanotubes. , 2006, Analytical chemistry.
[25] Pascal Salaün,et al. Voltammetric detection of mercury and copper in seawater using a gold microwire electrode. , 2006, Analytical chemistry.
[26] C. Banks,et al. Trace Detection of Mercury(II) Using Gold Ultra-Microelectrode Arrays , 2006 .
[27] Andre K. Geim,et al. Electric Field Effect in Atomically Thin Carbon Films , 2004, Science.
[28] D. Dionysiou,et al. Sources and remediation for mercury contamination in aquatic systems--a literature review. , 2004, Environmental pollution.
[29] Xuan Dai,et al. Anodic stripping voltammetry of arsenic(III) using gold nanoparticle-modified electrodes. , 2004, Analytical chemistry.
[30] R. Clough,et al. Investigation of equilibration and uncertainty contributions for the determination of inorganic mercury and methylmercury by isotope dilution inductively coupled plasma mass spectrometry , 2003 .
[31] R. Eisler. Health Risks of Gold Miners: A Synoptic Review , 2003, Environmental geochemistry and health.
[32] Xiu‐Ping Yan,et al. Speciation of mercury by hydrostatically modified electroosmotic flow capillary electrophoresis coupled with volatile species generation atomic fluorescence spectrometry. , 2003, Analytical chemistry.
[33] J. D. Fassett,et al. Development of isotope dilution cold vapor inductively coupled plasma mass spectrometry and its application to the certification of mercury in NIST standard reference materials. , 2001, Analytical chemistry.
[34] J. Nagy,et al. Electrochemical reactions of cytochrome c on electrodes modified by fullerene films , 2001 .
[35] E. Kirowa-Eisner,et al. Trace determination of mercury by anodic stripping voltammetry at the rotating gold electrode , 2000 .
[36] J. Diehl. Chemie in Lebensmitteln , 2000 .
[37] S. Kounaves,et al. On-site analysis of arsenic in groundwater using a microfabricated gold ultramicroelectrode array , 2000, Analytical chemistry.
[38] P. J. Ollivier,et al. Layer-by-Layer Assembly of Ultrathin Composite Films from Micron-Sized Graphite Oxide Sheets and Polycations , 1999 .
[39] F. Adams,et al. Two methods for the speciation analysis of mercury in fish involving microwave-assisted digestion and gas chromatography-atomic emission spectrometry , 1997 .
[40] D. Mandler,et al. Electrochemical mercury detection , 1993, Nature.
[41] J. Ruedy,et al. Methyl mercury exposure in northern Quebec. II. Neurologic findings in children. , 1983, American journal of epidemiology.
[42] Guang-Chao Zhao,et al. Graphene-based modified electrode for the direct electron transfer of Cytochrome c and biosensing , 2010 .
[43] Po-Yu Chen,et al. Polyviologen Modified Glassy Carbon Electrode Employed for Anodic Stripping Voltammetric Determination of Mercury(II) , 2008 .
[44] E. Mentasti,et al. Determination of Mercury by Anodic Stripping Voltammetry with a Gold Nanoparticle‐Modified Glassy Carbon Electrode , 2008 .
[45] K. Zhao,et al. One-step fabrication of chitosan–hematite nanotubes composite film and its biosensing for hydrogen peroxide , 2008 .
[46] W. K. Ayensu,et al. Review: Environmental exposure to mercury and its toxicopathologic implications for public health , 2003, Environmental toxicology.
[47] Y. Madrid,et al. Simultaneous determination of As, Hg, Se and Sb by hydride generation-microwave induced plasma atomic emission spectrometry after preconcentration in a cryogenic trap , 1999 .
[48] Jerry R. Miller,et al. Dispersal of mercury-contaminated sediments by geomorphic processes, sixmile canyon, Nevada, USA: Implications to site characterization and remediation of fluvial environments , 1996 .