Electrocatalytic oxidation and flow injection analysis of formaldehyde at binary metal oxides (Co3O4–NiO and CuO–Co3O4) modified pencil graphite electrodes
暂无分享,去创建一个
[1] R. Bandyopadhyay,et al. A Simple Nano Cerium Oxide Modified Graphite Electrode for Electrochemical Detection of Formaldehyde in Mushroom , 2021, IEEE Sensors Journal.
[2] A. Varghese,et al. Recent advances in bimetallic based nanostructures: Synthesis and electrochemical sensing applications , 2021 .
[3] Salvatore Spadaro,et al. Metal-Oxide Based Nanomaterials: Synthesis, Characterization and Their Applications in Electrical and Electrochemical Sensors , 2021, Sensors.
[4] Serdar Abaci,et al. Molecularly imprinted label-free sensor platform for impedimetric detection of 3-monochloropropane-1,2˗diol , 2021 .
[5] Huimin Yu,et al. One-step synthesis of CuO nanoparticles based on flame synthesis: As a highly effective non-enzymatic sensor for glucose, hydrogen peroxide and formaldehyde , 2021 .
[6] M. Şenel,et al. Lab-in-a-pencil graphite: A 3D-printed microfluidic sensing platform for real-time measurement of antipsychotic clozapine level. , 2020, Lab on a chip.
[7] A. Erdem,et al. Electrochemical detection of interaction between daunorubicin and DNA by hybrid nanoflowers modified graphite electrodes , 2020 .
[8] S. Yao,et al. Bi-Underpotential/PtAu-bulk co-electrodeposition and subsequent Bi dissolution for the electrocatalytic oxidation and amperometric analysis of formaldehyde. , 2020, In Analysis.
[9] K. Farhadi,et al. Application of Cu/porous silicon nanocomposite screen printed sensor for the determination of formaldehyde , 2020 .
[10] Lu-lu Qu,et al. Rapid detection of trace formaldehyde in food based on surface-enhanced Raman scattering coupled with assembled purge trap. , 2020, Food chemistry.
[11] M. Ehsan,et al. Facile and scalable fabrication of nanostructured nickel thin film electrodes for electrochemical detection of formaldehyde. , 2020, Analytical methods : advancing methods and applications.
[12] M. Charão,et al. Formaldehyde toxicity reports from in vitro and in vivo studies: a review and updated data , 2020, Drug and chemical toxicology.
[13] A. Tang,et al. Fabrication of CuO/Cu/TiO2 nanotube arrays modified electrode for detection of formaldehyde , 2020 .
[14] R. Vairamuthu,et al. Nickel hexacyanoferrate film coated pencil graphite electrode as sensor and electrode material for environment and energy applications , 2020, International Journal of Energy Research.
[15] S. Ganguly,et al. Mixed metal oxides in synergy at nanoscale: Electrospray induced porosity of in situ grown film electrode for use in electrochemical capacitor , 2020 .
[16] Huiting Xi,et al. Electrochemical determination of formaldehyde via reduced AuNPs@PPy composites modified electrode , 2020 .
[17] M. Mehran,et al. Performance Comparison of Industrially Produced Formaldehyde Using Two Different Catalysts , 2020, Processes.
[18] M. A. Vorotyntsev,et al. Palladium-polypyrrole composites as prospective catalysts for formaldehyde electrooxidation in alkaline solutions , 2020 .
[19] B. Nair,et al. A graphite pencil electrode with electrodeposited Pt-CuO for nonenzymatic amperometric sensing of glucose over a wide linear response range , 2020, Microchimica Acta.
[20] Tianhong Chen,et al. Highly sensitive and rapid responsive fluorescence probe for determination of formaldehyde in seafood and in vivo imaging application. , 2019, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[21] Sašo Šturm,et al. Formation of a Ni(OH)2/NiOOH active redox couple on nickel nanowires for formaldehyde detection in alkaline media , 2019, Electrochimica Acta.
[22] Kaige Zhang,et al. A hydrophobic deep eutectic solvent based vortex-assisted liquid-liquid microextraction for the determination of formaldehyde from biological and indoor air samples by high performance liquid chromatography. , 2019, Journal of chromatography. A.
[23] Hongbo Zhu,et al. Rapid and sensitive detection of formaldehyde using portable 2-dimensional gas chromatography equipped with photoionization detectors , 2019, Sensors and Actuators B: Chemical.
[24] F. Sedaghati,et al. CuO/Cu2O nanoparticles: A simple and green synthesis, characterization and their electrocatalytic performance toward formaldehyde oxidation , 2018, Microchemical Journal.
[25] Nuket Kartal Temel,et al. Combination of Ultrasound-Assisted Cloud-Point Extraction with Spectrophotometry for Extraction, Preconcentration, and Determination of Low Levels of Free Formaldehyde from Cosmetic Products. , 2018, Journal of AOAC International.
[26] A. Ghaffarinejad,et al. Copper oxide-polyaniline nanofiber modified fluorine doped tin oxide (FTO) electrode as non-enzymatic glucose sensor , 2018, Sensors and Actuators B: Chemical.
[27] J. M. George,et al. Metal oxide nanoparticles in electrochemical sensing and biosensing: a review , 2018, Microchimica Acta.
[28] B. Ye,et al. A novel electrochemical sensor based on Cu@Ni/MWCNTs nanocomposite for simultaneous determination of guanine and adenine. , 2018, Biosensors & bioelectronics.
[29] Yong Liu,et al. Ni(OH)2/Ni based on TiO2 nanotube arrays binder-free electrochemical sensor for formaldehyde accelerated detection , 2017 .
[30] Afzal Shah,et al. Gold copper alloy nanoparticles (Au-Cu NPs) modified electrode as an enhanced electrochemical sensing platform for the detection of persistent toxic organic pollutants , 2017 .
[31] Michael R Hamblin,et al. Noble metal nanoparticles in biosensors: recent studies and applications , 2017, Nanotechnology reviews.
[32] C. Dong,et al. Determination of Formaldehyde with a Platinum–Palladium–Graphene Nanocomposite Glassy Carbon Electrode , 2017 .
[33] B. Demir,et al. A novel ethanol biosensor on pulsed deposited MnOx-MoOx electrode decorated with Pt nanoparticles , 2016 .
[34] G. G. Gnana kumar,et al. Ni-Co bimetal nanowires filled multiwalled carbon nanotubes for the highly sensitive and selective non-enzymatic glucose sensor applications , 2016, Scientific Reports.
[35] S. Ghasemi,et al. Fabrication of novel nanozeolite-supported bimetallic PtCu nanoparticles modified carbon paste electrode for electrocatalytic oxidation of formaldehyde , 2016 .
[36] Hassan Heidari,et al. Amperometric enzyme-free glucose sensor based on the use of a reduced graphene oxide paste electrode modified with electrodeposited cobalt oxide nanoparticles , 2016, Microchimica Acta.
[37] S. Ghasemi,et al. Nickel/P nanozeolite modified electrode: A new sensor for the detection of formaldehyde , 2016 .
[38] K. V. Özdokur,et al. Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation , 2016 .
[39] Huimin Wu,et al. Nonenzymatic electrochemical sensor based on Fe@Pt core–shell nanoparticles for hydrogen peroxide, glucose and formaldehyde , 2016 .
[40] H. Uysal,et al. Biosensing of glucose in flow injection analysis system based on glucose oxidase-quantum dot modified pencil graphite electrode. , 2016, Talanta.
[41] S. Lany. Semiconducting transition metal oxides , 2015, Journal of physics. Condensed matter : an Institute of Physics journal.
[42] J. Raoof,et al. Fabrication of bimetallic Cu/Pd particles modified carbon nanotube paste electrode and its use towards formaldehyde electrooxidation , 2015 .
[43] A. Pandikumar,et al. Enhanced electrocatalytic performance of cobalt oxide nanocubes incorporating reduced graphene oxide as a modified platinum electrode for methanol oxidation , 2014 .
[44] B. Habibi,et al. Carbon-ceramic supported bimetallic Pt–Ni nanoparticles as an electrocatalyst for electrooxidation of methanol and ethanol in acidic media , 2013 .
[45] Jing Wang. Electrochemical biosensing based on noble metal nanoparticles , 2012, Microchimica Acta.
[46] C. McHale,et al. Reproductive and developmental toxicity of formaldehyde: a systematic review. , 2011, Mutation research.
[47] Xiangqin Lin,et al. Electrocatalytic Oxidation of Formaldehyde on Copper Oxide Nano‐crystalline Modified Glassy Carbon Electrode , 2010 .
[48] Kurt Straif,et al. A review of human carcinogens--Part F: chemical agents and related occupations. , 2009, The Lancet. Oncology.
[49] A. Salimi,et al. Nanomolar detection of hydrogen peroxide on glassy carbon electrode modified with electrodeposited cobalt oxide nanoparticles. , 2007, Analytica chimica acta.
[50] A. Salimi,et al. Direct voltammetry and electrocatalytic properties of hemoglobin immobilized on a glassy carbon electrode modified with nickel oxide nanoparticles , 2006 .
[51] Formaldehyde, 2-butoxyethanol and 1-tert-butoxypropan-2-ol. , 2006, IARC monographs on the evaluation of carcinogenic risks to humans.