| Literature DB >> 33438991 |
Ravi Nandan1, Prafull Pandey2, Ajay Gautam1, Omeshwari Yadorao Bisen1, Kamanio Chattopadhyay2,3, Maria-Magdalena Titirici4, Karuna Kar Nanda1.
Abstract
The properties and, hence, the application of materials are dependent on the way their constituent atoms are arranged. Here, we report a facile approach to produce body-centered cubic (bcc) and face-centered cubic (fcc) phases of bimetallic FeCo crystalline nanoparticles embedded into nitrogen-doped carbon nanotubes (NCNTs) with equal loading and almost similar particle size for both crystalline phases by a rational selection of precursors. The two electrocatalysts with similar composition but different crystalline structures of the encapsulated nanoparticles have allowed us, for the first time, to account for the effect of crystal structure on the overall work function of electrocatalysts and the concomitant correlation with the oxygen reduction reaction (ORR). This study unveils that the electrocatalysts with lower work function show lower activation energy to facilitate the ORR. Importantly, the difference between the ORR activation energy on electrocatalysts and their respective work functions are found to be identical (∼0.2 eV). A notable decrease in the ORR activity after acid treatment indicates the significant role of encapsulated FeCo nanoparticles in influencing the oxygen electrochemistry by modulating the material property of overall electrocatalysts.Entities:
Keywords: bimetallic bcc/fcc FeCo nanoparticles; electrocatalysts; nitrogen-doped CNTs; oxygen reduction reaction; work function
Year: 2021 PMID: 33438991 DOI: 10.1021/acsami.0c16937
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229