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For: Kavian S, Azizi SN, Ghasemi S. Preparation of a novel supported electrode comprising a nickel (II) hydroxide-modified carbon paste electrode (Ni(OH)2-X/CPE) for the electrocatalytic oxidation of formaldehyde. Chinese Journal of Catalysis 2016;37:159-68. [DOI: 10.1016/s1872-2067(15)60990-1] [Citation(s) in RCA: 13] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [What about the content of this article? (0)] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/17/2022]
Number Cited by Other Article(s)
1
Eshagh-Nimvari S, Hassaninejad-Darzi SK. Electrocatalytic Performance of Nickel Hydroxide-Decorated Microporous Nanozeolite Beta-Modified Carbon Paste Electrode for Formaldehyde Oxidation. Electrocatalysis (N Y) 2022. [DOI: 10.1007/s12678-022-00799-3] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/24/2022]
2
Hassasi S, Hassaninejad-Darzi SK. Electro-Oxidation of Tamoxifen on Nanozeolite NaY Modified Carbon Paste Electrode. RUSS J ELECTROCHEM+ 2022. [DOI: 10.1134/s1023193522080067] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/23/2022]
3
Deng L, Yuan J, Xie S, Huang H, Yue R, Xu J. A novel Pd-Fe3O4/PEDOT:PSS/nitrogen and sulfur doped-Ti3C2Tx frameworks as highly sensitive sensing platform toward parathion-methyl residue in nature. Electrochim Acta 2022. [DOI: 10.1016/j.electacta.2022.139897] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]
4
Elghamry I, Al-Jendan SA, Saleh MM, Abdelsalam ME. Bimetallic nickel/manganese phosphate–carbon nanofiber electrocatalyst for the oxidation of formaldehyde in alkaline medium. RSC Adv 2022;12:20656-20671. [PMID: 35919157 PMCID: PMC9292137 DOI: 10.1039/d2ra03359c] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/29/2022] [Accepted: 07/09/2022] [Indexed: 11/30/2022]  Open
5
Daemi S, Moalem-Banhangi M, Ghasemi S, Ashkarran AA. An efficient platform for the electrooxidation of formaldehyde based on amorphous NiWO4 nanoparticles modified electrode for fuel cells. J Electroanal Chem (Lausanne) 2019. [DOI: 10.1016/j.jelechem.2019.113270] [Citation(s) in RCA: 14] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/26/2022]
6
Nachaki EO, Ndangili PM, Naumih NM, Masika E. Nickel-Palladium-Based Electrochemical Sensor for Quantitative Detection of Formaldehyde. ChemistrySelect 2018. [DOI: 10.1002/slct.201702019] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/08/2023]
7
Wen X, Xi J, Long M, Tan L, Wang J, Yan P, Zhong L, Liu Y, Tang A. Ni(OH)2/Ni based on TiO2 nanotube arrays binder-free electrochemical sensor for formaldehyde accelerated detection. J Electroanal Chem (Lausanne) 2017. [DOI: 10.1016/j.jelechem.2017.09.066] [Citation(s) in RCA: 17] [Impact Index Per Article: 2.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/18/2022]
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