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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Electrochemical NMR spectroscopy: Electrode construction and magnetic sample stirring

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Author(s):
Da Silva, Pollyana Ferreira [1] ; Gomes, Bruna Ferreira [1] ; Silva Lobo, Carlos Manuel [1] ; Keng Queiroz Junior, Luiz Henrique [2] ; Danieli, Ernesto [3] ; Carmo, Marcelo [4] ; Bluemich, Bernhard [3] ; Colnago, Luiz Alberto [5]
Total Authors: 8
Affiliation:
[1] Univ Sao Paulo, Inst Quim Sao Carlos, Sao Carlos, SP - Brazil
[2] Univ Fed Goias, Inst Quim, Lab Ressonancia Magnit Nucl, Goiania, Go - Brazil
[3] Rhein Westfal TH Aachen, Inst Tech Chem & Makromol Chem, Aachen - Germany
[4] Forschungszentrum Julich, Julich - Germany
[5] EMBRAPA Instrumentacao, Sao Carlos, SP - Brazil
Total Affiliations: 5
Document type: Journal article
Source: Microchemical Journal; v. 146, p. 658-663, MAY 2019.
Web of Science Citations: 1
Abstract

The use of nuclear magnetic resonance (NMR) spectroscopy to study electrochemical reactions in situ (EC-NMR), in solution, was demonstrated more than four decades ago. Although, the immense potential of EC-NMR has been demonstrated in several applications, this method has been limited to a few specialized groups since there are no commercial EC-NMR cells or cells that can be easily assembled for routine measurements. In most of the proposed EC-NMR cells the electrodes are placed inside the NMR coil, which deteriorates the magnetic field homogeneity and reduces the signal-to-noise ratio. To minimize these interferences, electrochemical cells have been constructed as flow cells, using ultra thin metallic films as electrodes, which are too complex to be produced by non-experts, or use non-metallic electrodes that have limited electrochemical applications. In this paper we report a very simple and efficient way to construct an EC-NMR cell using standard Pt and Ag wires as electrodes. These wires are assembled as coils on capillaries and are inserted into 5 mm NMR tubes and placed approximately 0.5 mm above the NMR coil. During the in situ EC-NMR reaction the magnetohydrodynamic effect stirs the solution, homogenizing the concentration of the reagent and the product in the NMR detection region. This effect allows the concentration of the analyte to be measured in real time, even with the electrodes outside the NMR detection region. The electrode materials are not limited to Pt or Ag wires and can be replaced by other materials according to the studied reaction. Details showing how to make the electrodes are presented in a video in the supplementary material. The application and performance of this cell were demonstrated with an in situ EC-NMR study of the electro-oxidation of ascorbic acid in solution. In this particular case the magnetic field increased the reaction rate by a factor of approximately two. (AU)

FAPESP's process: 17/12864-0 - Effect of NMR magnetic field in chemical reactions monitored NMR in situ
Grantee:Luiz Alberto Colnago
Support Opportunities: Regular Research Grants
FAPESP's process: 12/22281-9 - NMR study of the magneto-convective phenomenon on paramagnetic ions during electrodeposition
Grantee:Bruna Ferreira Gomes Lobo
Support Opportunities: Scholarships in Brazil - Doctorate (Direct)
FAPESP's process: 16/01537-6 - Study of the coupling between electrochemistry and low-field, mid-resolution NMR for the in situ and on line analysis of redox reactions of organic compounds and the evaluation of the magnetic field effect on the velocity of the in situ reactions
Grantee:Bruna Ferreira Gomes Lobo
Support Opportunities: Scholarships abroad - Research Internship - Doctorate (Direct)