Amplified nanostructure electrochemical sensor for simultaneous determination of captopril, acetaminophen, tyrosine and hydrochlorothiazide

H Karimi-Maleh, MR Ganjali, P Norouzi… - Materials Science and …, 2017 - Elsevier
A novel nanomaterial-based voltammetric sensor has been developed for use a highly
sensitive tool for the simultaneous determination of captopril (CA), acetaminophen (AC) …

Electrocatalytic determination of captopril in real samples using NiO nanoparticle modified (9, 10-dihydro-9, 10-ethanoanthracene-11, 12-dicarboximido)-4 …

H Karimi-Maleh, M Moazampour, VK Gupta… - Sensors and Actuators B …, 2014 - Elsevier
Synthesis and application of NiO nanoparticles (NiO/NPs) and (9, 10-dihydro-9, 10-
ethanoanthracene-11, 12-dicarboximido)-4-ethylbenzene-1, 2-diol (DED) as high sensitive …

Voltammetric determination of norepinephrine in the presence of acetaminophen using a novel ionic liquid/multiwall carbon nanotubes paste electrode

S Salmanpour, T Tavana, A Pahlavan… - Materials Science and …, 2012 - Elsevier
A novel multiwall carbon nanotubes (MWCNTs) modified carbon ionic liquid electrode
(CILE) was fabricated and used to investigate the electrochemical behavior of …

Fabrication of a new electrochemical sensor based on AuPt bimetallic nanoparticles decorated multi-walled carbon nanotubes for determination of diclofenac

MM Eteya, GH Rounaghi, B Deiminiat - Microchemical Journal, 2019 - Elsevier
A new electrochemical sensor was developed for determination of diclofenac based on
functionalized multi-walled carbon nanotubes (f-MWCNTs) and gold–platinum bimetallic …

Selective voltammetric determination of norepinephrine in the presence of acetaminophen and tryptophan on the surface of a modified carbon nanotube paste …

H Beitollahi, S Mohammadi - Materials Science and Engineering: C, 2013 - Elsevier
A new electrochemical sensor for the determination of norepinephrine (NE), acetaminophen
(AC) and tryptophan (TRP) is described. The sensor is based on carbon paste electrode …

Simultaneous determination of diclofenac and indomethacin using a sensitive electrochemical sensor based on multiwalled carbon nanotube and ionic liquid …

K Sarhangzadeh, AA Khatami, M Jabbari… - Journal of Applied …, 2013 - Springer
Multiwalled carbon nanotube and ionic liquid-modified carbon ceramic electrode (MWCNT–
IL| CCE) was employed for the simultaneous determination of diclofenac and indomethacin …

Simultaneous voltammetric determination of paracetamol, cetirizine and phenylephrine using a multiwalled carbon nanotube-platinum nanoparticles nanocomposite …

PK Kalambate, AK Srivastava - Sensors and Actuators B: Chemical, 2016 - Elsevier
The paper describes fabrication and application of electrochemical sensor for simultaneous
determination of paracetamol (PCT), cetirizine (CTZ) and phenylephrine (PHE) based on …

Multi walled carbon nanotubes supported CuO-Au hybrid nanocomposite for the effective application towards the electrochemical determination of acetaminophen …

P Shaikshavali, TM Reddy, VN Palakollu… - Synthetic Metals, 2019 - Elsevier
Herein, a newly developed CuO-Au composite was successfully decorated on multiwalled
carbon nanotubes (MWCNTs) and employed as an electrochemical sensor. The developed …

Gold nanoparticle/multi-walled carbon nanotube modified glassy carbon electrode as a sensitive voltammetric sensor for the determination of diclofenac sodium

A Afkhami, A Bahiraei, T Madrakian - Materials Science and Engineering …, 2016 - Elsevier
A simple and highly sensitive sensor for the determination of diclofenac sodium based on
gold nanoparticle/multi-walled carbon nanotube modified glassy carbon electrode is …

Carbon nanotube ensembled hybrid nanocomposite electrode for direct electrochemical detection of epinephrine in pharmaceutical tablets and urine

KK Reddy, M Satyanarayana, KY Goud, KV Gobi… - Materials Science and …, 2017 - Elsevier
An efficient electrochemical sensor for selective detection of the neurotransmitter,
epinephrine (Epn), has been fabricated with the aid of a functionalized multiwall carbon …