Open Conference Systems, International Conference on Electrochemical Energy and Technology

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Effect of acid leaching on the catalytic activity of Co-Salen/C non-precious metal catalysts
Pan Xu, Xuejun Zhou, Jinli Qiao

Last modified: 2014-10-11

Abstract


To overcome the barrier of  high cost caused by the exclusive use of Pt-based catalysts, the development of non-precious  metal catalysts (NPMCs) to replace Pt in polymer electrolyte membrane fuel cells has become the goal of intensive research in recent years [1, 2]. Some of these NPMCs have shown remarkable catalytic activity towards ORR. Among these NPMCs, carbon-supported transition metal/nitrogen ( M/N/C, M = Fe, Co, Mn, etc.) materials have gained increased attention due to their promising catalytic activity and high durability[3,4,5].

In this paper, with Co(SO4)7H2O as the metal precursor and N,N - bis (salicylidene) ethylenediamine (Salen) as the nitrogen precursor, carbon-supported non-precious metal catalysts, Co-Salen/C, were synthesized using a facile thermal annealing approach. The catalysts were heat-treated at different temperatures (from 600- 1000oC) to optimize oxygen reduction reaction (ORR) activity. To clarify the significance of metal(Co) content for the ORR enhancement, the catalyst was further processed by acid leaching.

The electrocatalytic activity and electron transfer mechanism were demonstrated in oxygen-saturated alkaline electrolyte by cyclic voltammetry (CV), linear sweep voltammetry (LSV) as well as rotating disk electrode (RDE) techniques. Scanning electron microscope-energy dispersive spectrometer (SEM-EDS), X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS) measurements were used to identify the structure and composition of the catalysts.

Figure 1 shows the LSV curves of the Co-Salen/C-700 catalyst before and after acid-leaching. It can be seen that the ORR activity of the sample after acid-leaching decreased compared with the sample before acid-leaching. The Co-Salen/C-700 catalyst without acid-leaching has a half-wave potential at 0.03V. After acid-leaching, the half-wave potential decreased about 20mV. And as is revealed in table 1(), the metal Co is removed basically during acid-leaching. That is to say, the absence of Co caused the decrease of ORR activity. Then, we can draw the conclusion that metal component (Co) is an important factor to compose this active Co-Salen/C catalyst.


Keywords


ORR; electrocatalyst;acid leaching

References


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2. Z. W. Chen, D. Higgins, A. Yu, L. Zhang ,  J. J. Zhang. Energy   Environ.  Sci. 4, 3167 (2011).

3. K. X. Niu, B. P. yang, J. F. Cui, J. T. Jin, X. G. Fu, Q. P. Zhao, J. power sources. 243, 65 (2013).

4. X. G. Fu, Y. R. Liu, X. P. Cao, J. T. Jin, Q. Liu, J. Y. Zhang.  Appl . Catal.B. 130-131,143(2013)

5. L. Ding, X. Qin, X.J. Zhou, J.L Qiao, H. Li, H.J Wang, J Appl Electrochem. 43, 43 (2013).


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