2021
DOI: 10.1007/s11581-021-04376-4
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Co/C nanomaterial derived from Co metal–organic framework for oxygen evolution reaction

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Cited by 14 publications
(11 citation statements)
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“…The locations and intensities of the diffraction peaks match the known crystallographic data of AgCo-MOF and MnS, showing their effective integration into the composite material. The diffraction spikes at 2θ = 8.23°, 18.7°, and 28.4° belong to the (200), (001), and (201) planes which confirm the existence of Co-MOF . The diffraction peaks at 2θ = 38.3°, 64.4°, and 76.4° belong to the AgCo-MOF crystallographic planes (111), (220), and (311) .…”
Section: Results Analysismentioning
confidence: 61%
“…The locations and intensities of the diffraction peaks match the known crystallographic data of AgCo-MOF and MnS, showing their effective integration into the composite material. The diffraction spikes at 2θ = 8.23°, 18.7°, and 28.4° belong to the (200), (001), and (201) planes which confirm the existence of Co-MOF . The diffraction peaks at 2θ = 38.3°, 64.4°, and 76.4° belong to the AgCo-MOF crystallographic planes (111), (220), and (311) .…”
Section: Results Analysismentioning
confidence: 61%
“…48 The distinct peak observed at 780 cm −1 was attributed to the Co–O stretching frequency. 49 Moreover, the peaks at 2971, 1280, 1100, and 1050 cm −1 depict the characteristics of ν (C–H), ν (C–N), ν (C–C), and ν (C–N) stretching frequencies, respectively. 50…”
Section: Resultsmentioning
confidence: 99%
“…48 The distinct peak observed at 780 cm À1 was attributed to the Co-O stretching frequency. 49 Moreover, the peaks at 2971, 1280, 1100, and 1050 cm À1 depict the characteristics of n(C-H), n(C-N), n(C-C), and n(C-N) stretching frequencies, respectively. 50 To understand the thermal stability of the material we also performed thermogravimetric analysis (TGA) for Co-CP (Fig.…”
Section: Characterization Of Co-cpmentioning
confidence: 99%
“…The electrode used and the electrochemical test method were given in our previous work. 40 All electrochemical tests were performed in the 1.0 M KOH solution after purging with pure N 2 for at least 30 min. The potential measured against a saturated calomel electrode (SCE) was converted to the potential versus the reversible hydrogen electrode (RHE) using the Nernst equation: E RHE = 0.241 V + 0.059 × pH + E SCE .…”
Section: Methodsmentioning
confidence: 99%