Symplectic ID:
1137795
Source:
Ora (Hyrax)
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1
Last Synced with Symplectic:
Sunday, 2 August, 2026 - 17:28
DOI:
10.1007/s11426-020-9889-1
Publication Date:
Wednesday, 2 December, 2020
First Page:
322
Last Page:
329
Keywords:
electrode kinetics
transfer coefficient
Butler-Volmer theory
Marcus-Hush theory
hydrazine
Editors list has been truncated:
Abstract:
Although hydrazine (N2H4) oxidation in an electrochemical environment has been of great interest for years its intrinsic electron transfer kinetics remain uncertain. We report that the phenomenological Butler-Volmer (BV) theory is not appropriate for interpreting the process of hydrazine oxidation for which an astonishingly wide range of transfer coefficients, Tafel slopes and diffusion coefficient have been previously reported. Rather Tafel analysis for voltammetry recorded at Glassy Carbon (GC) electrodes reveals a strong potential dependence of the anodic transfer coefficient, consistent with the symmetric Marcus-Hush (sMH) theory. According to the relationship β=(λ+FE0f)/(2λ-F/2λe), the reorganization energy (0.35 ± 0.07 eV) and an approximate formal potential of the rate-determining first electron transfer were successfully extracted from the voltammetric responses.
Publisher:
Springer
ISSN:
1674-7291
Journal Title:
Science China Chemistry
eISSN:
1869-1870
Volume:
64
Issue:
2
ID at Source:
uuid_e9d23621-0c0c-4236-b864-e90c0818a42d
Publication Status:
Published
Open access:
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