生物炭
钴
氮气
化学
兴奋剂
电催化剂
化学工程
无机化学
材料科学
电化学
电极
热解
有机化学
物理化学
光电子学
工程类
作者
Renata Matos,Inês S. Marques,A.J.S. Fernandes,Víctor Karim Abdelkader-Fernández,Andreia F. Peixoto,Diana M. Fernandes
标识
DOI:10.1016/j.ijhydene.2025.05.167
摘要
The development of bifunctional ORR and OER electrocatalysts is fundamental to the application of electrochemical energy conversion devices (e.g. fuel cells). However, these electrocatalysts must be sustainable and cost-effective. Herein, we prepared several shrimp shells-derived biochars (directly obtained from the pyrolysis – CC; obtained by pretreatment before pyrolysis: hydrothermal carbonization - CCh and acid washing- CCw), which were simultaneously doped with N and decorated with Co nanoparticles via wet impregnation followed by pyrolysis. The resulting composites (Co/N-CC, Co/N-CCh and Co/N-CCw) presented distinct physical-chemical properties, as assessed by ICP-OES, SEM, N 2 adsorption-desorption isotherms, Raman spectroscopy, XRD and XPS. While the biochar support used had an important effect on composite electrocatalytic activity, in general, the introduction of N functionalities and Co nanoparticles led to enhanced ORR and OER performances. The effect of the pyrolysis temperature during the doping/Co incorporation procedure was also evaluated on the most promising biochar support (CC) and the resulting composite Co/N-CC_600 displayed enhanced performance towards both reactions, as it led to higher content of pyridinic-N, graphitic-N and N coordinated to Co, higher degree of graphitization and more exposed active sites. Indeed, it achieved comparable E 1/2 to Pt/C (0.79 V vs. RHE), E onset of 0.85 V vs. RHE, j L of −3.80 mA cm −2 , n O2 of 3.29 and TS of 52 mV dec −1 for ORR. In OER, it presented similar η 10 and TS (0.48 V and 79 mV dec −1 , respectively) to benchmark IrO 2 . Moreover, the electrocatalyst showed excellent stability for ORR and a moderate current retention in OER. • Co supported N-doped biochars were prepared through different procedures. • The biochar support used had a critical role in ORR and OER performance. • Temperature of Co and N incorporation influenced the electrocatalyst behavior. • Co and N incorporation led to enhanced ORR and OER performance. • Co/N-CC_600 showed promising bifunctional ORR/OER results.
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