Electrochemical Behavior of Carbon Nanotube/Mn(III) Salen Doped Carbon Paste Electrode and Its Application for Sensitive Determination of N-acetylcysteine in the Presence of Folic Acid
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[1] A. Ensafi,et al. A new voltammetric sensor for the determination of sulfite in water and wastewater using modified-multiwall carbon nanotubes paste electrode , 2013 .
[2] Hassan Karimi-Maleh,et al. Application of modified multiwall carbon nanotubes paste electrode for simultaneous voltammetric determination of morphine and diclofenac in biological and pharmaceutical samples , 2012 .
[3] A. Akbari,et al. Voltammetric determination of isoproterenol using a 5-amino-2′,4′- dimethoxybiphenyl-2-ol modified carbon nanotube paste electrode , 2012 .
[4] A. Akbari,et al. Electrochemical behavior of a carbon paste electrode modified with 5-amino-3′,4′-dimethyl-biphenyl-2-ol/carbon nanotube and its application for simultaneous determination of isoproterenol, acetaminophen and N-acetylcysteine , 2012 .
[5] Mohammad A. Khalilzadeh,et al. Sensitive voltammetric determination of epinephrine in the presence of acetaminophen at a novel ionic liquid modified carbon nanotubes paste electrode , 2012 .
[6] J. Raoof,et al. Electrochemical behavior of isoproterenol in the presence of uric acid and folic acid at a carbon paste electrode modified with 2,7-bis(ferrocenyl ethyl)fluoren-9-one and carbon nanotubes , 2012, Journal of Solid State Electrochemistry.
[7] H. Beitollahi,et al. Novel nanostructure-based electrochemical sensor for simultaneous determination of dopamine and acetaminophen , 2012 .
[8] A. Ensafi,et al. Simultaneous determination of cysteamine and folic acid in pharmaceutical and biological samples using modified multiwall carbon nanotube paste electrode , 2012 .
[9] A. Ensafi,et al. Electrocatalytic determination of sulfite using a modified carbon nanotubes paste electrode: application for determination of sulfite in real samples , 2012, Ionics.
[10] H. Beitollahi,et al. Electrocatalytic and simultaneous determination of isoproterenol, uric acid and folic acid at molybdenum (VI) complex-carbon nanotube paste electrode , 2011 .
[11] Yongyou Hu,et al. Manganese dioxide-coated carbon nanotubes as an improved cathodic catalyst for oxygen reduction in a , 2011 .
[12] Rasa Pauliukaite,et al. Direct electron transfer of glucose oxidase at glassy carbon electrode modified with functionalized carbon nanotubes within a dihexadecylphosphate film , 2011 .
[13] B. Rezaei,et al. Molecularly imprinted-multiwall carbon nanotube paste electrode as a biosensor for voltammetric detection of rutin , 2011 .
[14] J. Raoof,et al. Multi-wall carbon nanotubes as a sensor and ferrocene dicarboxylic acid as a mediator for voltammetric determination of glutathione in hemolysed erythrocyte , 2011 .
[15] Wanzhi. Wei,et al. Application of multi-walled carbon nanotubes modified carbon ionic liquid electrode for electrocatalytic oxidation of dopamine. , 2011, Colloids and surfaces. B, Biointerfaces.
[16] Chun-Yang Zhang,et al. Simple detection of nucleic acids with a single-walled carbon-nanotube-based electrochemical biosensor. , 2011, Biosensors & bioelectronics.
[17] B. Rezaei,et al. Highly sensitive voltammetric sensor based on catechol-derivative-multiwall carbon nanotubes for the catalytic determination of captopril in patient human urine samples. , 2011, Colloids and surfaces. B, Biointerfaces.
[18] H. Beitollahi,et al. Selective voltammetric determination of norepinephrine in the presence of acetaminophen and folic acid at a modified carbon nanotube paste electrode , 2011 .
[19] J. Raoof,et al. Fabrication of a nanostructure-based electrochemical sensor for simultaneous determination of N-acetylcysteine and acetaminophen. , 2011, Talanta.
[20] Hassan Karimi-Maleh,et al. Characterization of Mn-nanoparticles decorated organo-functionalized SiO2–Al2O3 mixed-oxide as a novel electrochemical sensor: application for the voltammetric determination of captopril , 2011 .
[21] S. Mallakpour,et al. An electrochemical investigation of novel optically active poly(amide-imide)s based on natural amino acids using multi-wall carbon nanotubes paste electrode , 2011 .
[22] J. Raoof,et al. Application of a Carbon-Paste Electrode Modified with 2,7-Bis(ferrocenyl ethyl)fluoren-9-one and Carbon Nanotubes for Voltammetric Determination of Levodopa in the Presence of Uric Acid and Folic Acid , 2011 .
[23] H. Beitollahi,et al. Electrocatalytic oxidation and determination of epinephrine in the presence of uric acid and folic acid at multiwalled carbon nanotubes/molybdenum(VI) complex modified carbon paste electrode , 2011 .
[24] Hassan Karimi-Maleh,et al. Simultaneous determination of N-acetylcysteine and acetaminophen by voltammetric method using N-(3,4-dihydroxyphenethyl)-3,5-dinitrobenzamide modified multiwall carbon nanotubes paste electrode , 2011 .
[25] S. Mallakpour,et al. N‐(3,4‐Dihydroxyphenethyl)‐3,5‐dinitrobenzamide‐Modified Multiwall Carbon Nanotubes Paste Electrode as a Novel Sensor for Simultaneous Determination of Penicillamine, Uric acid, and Tryptophan , 2011 .
[26] B. Rezaei,et al. An ionic liquid-type multiwall carbon nanotubes paste electrode for electrochemical investigation and determination of morphine , 2011 .
[27] A. Ensafi,et al. Voltammetric determination of isoproterenol using multiwall carbon nanotubes-ionic liquid paste electrode. , 2011, Drug testing and analysis.
[28] A. Ensafi,et al. Determination of isoproterenol and uric acid by voltammetric method using carbon nanotubes paste electrode and p-chloranil. , 2011, Colloids and surfaces. B, Biointerfaces.
[29] A. Ensafi,et al. A Voltammetric Sensor for the Simultaneous Determination of l-Cysteine and Tryptophan Using a p-Aminophenol-Multiwall Carbon Nanotube Paste Electrode , 2011, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[30] D. Afzali,et al. Determination trace amounts of copper, nickel, cobalt and manganese ions in water samples after simultaneous separation and preconcentration , 2011 .
[31] S. Mallakpour,et al. Synthesis and characterization of novel dopamine-derivative: Application of modified multi-wall carbon nanotubes paste electrode for electrochemical investigation , 2011 .
[32] H. Karimi-Maleh,et al. Determination of captopril in patient human urine using ferrocenemonocarboxylic acid modified carbon nanotubes paste electrode , 2010 .
[33] J. Raoof,et al. Electrocatalytic oxidation of thiosulfate at 2,7-bis(ferrocenylethyl)-fluoren-9-one-modified carbon paste electrode (2,7-BFEFMCPE): Application to the catalytic determination of thiosulfate in real sample , 2010 .
[34] A. Ensafi,et al. A Voltammetric Sensor Based on Modified Multiwall Carbon Nanotubes for Cysteamine Determination in the Presence of Tryptophan Using p-Aminophenol as a Mediator , 2010 .
[35] B. Rezaei,et al. p-Aminophenol-multiwall carbon nanotubes-TiO2 electrode as a sensor for simultaneous determination of penicillamine and uric acid. , 2010, Colloids and surfaces. B, Biointerfaces.
[36] T. Khayamian,et al. Voltammetric measurement of trace amount of glutathione using multiwall carbon nanotubes as a sensor and chlorpromazine as a mediator , 2010 .
[37] A. Arabzadeh,et al. Simultaneous Determination of Dopamine and Uric Acid by Electrocatalytic Oxidation on a Carbon Paste Electrode Using Pyrogallol Red as a Mediator , 2010 .
[38] Xia Xi,et al. Electrochemical determination of thiamazole at a multi-wall carbon nanotube modified glassy carbon electrode , 2010 .
[39] A. Ensafi,et al. Modified multiwall carbon nanotubes paste electrode as a sensor for simultaneous determination of 6-thioguanine and folic acid using ferrocenedicarboxylic acid as a mediator , 2010 .
[40] J. Raoof,et al. Catechol as an electrochemical indicator for voltammetric determination of N-acetyl-l-cysteine in aqueous media at the surface of carbon paste electrode , 2010 .
[41] H. Karimi-Maleh,et al. Sensitive and Selective Determination of Phenylhydrazine in the Presence of Hydrazine at a Ferrocene Monocarboxylic Acid Modified Carbon Nanotube Paste Electrode , 2009 .
[42] Fatemeh Khaleghi,et al. Electrocatalytic Determination of Ampicillin Using Carbon-Paste Electrode Modified with Ferrocendicarboxylic Acid , 2009 .
[43] J. Raoof,et al. Electrocatalytic oxidation of glutathione at carbon paste electrode modified with 2,7-bis (ferrocenyl ethyl) fluoren-9-one: application as a voltammetric sensor , 2009 .
[44] H. Karimi-Maleh,et al. Nanomolar and selective determination of epinephrine in the presence of norepinephrine using carbon paste electrode modified with carbon nanotubes and novel 2-(4-oxo-3-phenyl-3,4-dihydro-quinazolinyl)-N'-phenyl-hydrazinecarbothioamide. , 2008, Analytical chemistry.
[45] A. Ensafi,et al. Electrocatalytic Determination of 6-Tioguanine at a p-Aminophenol Modified Carbon Paste Electrode , 2008 .
[46] J. Raoof,et al. Voltammetric determination of l-cysteic acid on a 1-[4-(ferrocenyl-ethynyl)phenyl]-1-ethanone modified carbon paste electrode , 2008 .
[47] Hassan Karimi-Maleh,et al. Carbon Paste Electrode Incorporating 1‐[4‐(Ferrocenyl Ethynyl) Phenyl]‐1‐Ethanone for Electrocatalytic and Voltammetric Determination of Tryptophan , 2008 .
[48] L. H. Marcolino,et al. Voltammetric determination of N-acetylcysteine using a carbon paste electrode modified with copper(II) hexacyanoferrate(III) , 2006 .
[49] O. Fatibello‐Filho,et al. Generation and destruction of unstable reagent in flow injection system: determination of acetylcysteine in pharmaceutical formulations using bromine as reagent. , 2005, Journal of pharmaceutical and biomedical analysis.
[50] Rodney Andrews,et al. Carbon Nanotube Sol−Gel Composite Materials , 2001 .
[51] D. Albanes,et al. Dietary and other methyl-group availability factors and pancreatic cancer risk in a cohort of male smokers. , 2001, American journal of epidemiology.
[52] Pulickel M. Ajayan,et al. Fast Electron Transfer Kinetics on Multiwalled Carbon Nanotube Microbundle Electrodes , 2001 .
[53] P. Ajayan. Nanotubes from Carbon. , 1999, Chemical reviews.
[54] S. Iijima. Helical microtubules of graphitic carbon , 1991, Nature.
[55] A. Allafchian,et al. Fast and sensitive determination of captopril by voltammetric method using ferrocenedicarboxylic acid modified carbon paste electrode , 2009 .
[56] F. Zhao,et al. Voltammetric Determination of Folic Acid with a Multi-Walled Carbon Nanotube-Modified Gold Electrode , 2006 .
[57] J. Moreira,et al. Application of catalytic stripping voltammetry for the determination of organic sulfur compounds at a hanging mercury drop electrode: behaviour of cysteine, cystine and N-acetylcysteine in the presence of nickel ion , 1994 .