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Bioimpacts. 2018;8(4): 263-270. doi: 10.15171/bi.2018.29
PMID: 30397581        PMCID: PMC6209831

Original Research

Nafion-coated cadmium pentacyanonitrosylferrate-modified glassy carbon electrode for detection of dopamine in biological samples

Mohammad Johari-Ahar 1,2, Jaleh Barar 2,3 * ORCID, Pari Karami 1,2, Davoud Asgari 2,3, Soodabeh Davaran 3, Mohammad-Reza Rashidi 3 *

Cited by CrossRef: 5


1- Matos‐Peralta Y, Llanes D, Cano A, Hernández M, Bazán‐Bravo L, Justo Chao Mujica F, Felipe Desdín García L, Reguera L, Antuch M. Mixed Ni2+Co2+ Transition Metal Nitroprusside: Determination of Its Electrochemical Behavior and Electrocatalytic Activity towards the Oxidation of Phenylhydrazine. ChemistrySelect. 2022;7(18) [Crossref]
2- Du X, Hou Y. Hotspots analysis and perspectives of Prussian blue analogues (PBAs) in environment and energy in recent 20 years by CiteSpace. Environ Sci Pollut Res. 2022;30(5):11141 [Crossref]
3- Anbumannan V, Kumar R, Suresh K. Enhanced electrochemical detection of dopamine by graphene oxide/tungsten trioxide nanocomposite. Materials Science in Semiconductor Processing. 2021;127:105696 [Crossref]
4- Reguera L, Avila Y, Reguera E. Transition metal nitroprussides: Crystal and electronic structure, and related properties. Coordination Chemistry Reviews. 2021;434:213764 [Crossref]
5- Panapimonlawat T, Phanichphant S, Sriwichai S. Electrochemical Dopamine Biosensor Based on Poly(3-aminobenzylamine) Layer-by-Layer Self-Assembled Multilayer Thin Film. Polymers. 2021;13(9):1488 [Crossref]


As a peer-reviewed international open-access journal, BioImpacts publishes articles on basic and translational aspects of pharmaceutical and biomedical sciences. 
Acceptance rate: 24% 
Publication fee: Free of charge