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Assessing the electron transfer and oxygen mass transfer of the oxygen reduction reaction using a new electrode kinetic equation
Yin, Fengjun1,2; Liu, Yuan1; Wang, Chuan3,4; Liu, Hong1,3,4
2018-06-21
摘要The oxygen reduction reaction (ORR), which is widely employed for energy harvesting and environmental purification, requires an electrode kinetic equation for assessing the electron transfer (ET) and oxygen mass transfer (OMT). Herein, we establish a new kinetic equation in conjunction with the ET kinetics and OMT flux, creating a parameter (k(O2)) characterizing the effect of OMT. This equation allows for the nonlinear fitting of polarizations in full scale and outputs reliable parameters, including alpha (ET coefficient), j(0) (exchange current density) and k(O2). The performance is superior to the Tafel equation by outputting reliable values of alpha and j(0), and covers the function of the Koutecky-Levich equation to calculate the electron transfer number (n) as well. Furthermore, by means of k(O2), the assessment of OMT becomes available, disclosing the facilitating effect brought about by the porous structure on the ORR rate. Consequently, the new equation provides a reliable and facile approach for assessing the performance of electrode reaction systems and electrocatalysts.
DOI10.1039/c8cp01305e
发表期刊PHYSICAL CHEMISTRY CHEMICAL PHYSICS
ISSN1463-9076
卷号20期号:23页码:16159-16166
收录类别SCI
WOS记录号WOS:000439173700058
语种英语