Literature DB >> 29272136

Roles of Mo Surface Dopants in Enhancing the ORR Performance of Octahedral PtNi Nanoparticles.

Qingying Jia1, Zipeng Zhao2,3, Liang Cao4, Jingkun Li1, Shraboni Ghoshal1, Veronica Davies1, Eli Stavitski5, Klaus Attenkofer5, Zeyan Liu2,3, Mufan Li3,6, Xiangfeng Duan3,6, Sanjeev Mukerjee1, Tim Mueller4, Yu Huang2,3.   

Abstract

Doping with a transition metal was recently shown to greatly boost the activity and durability of PtNi/C octahedral nanoparticles (NPs) for the oxygen reduction reaction (ORR), but its specific roles remain unclear. By combining electrochemistry, ex situ and in situ spectroscopic techniques, density functional theory calculations, and a newly developed kinetic Monte Carlo model, we showed that Mo atoms are preferentially located on the vertex and edge sites of Mo-PtNi/C in the form of oxides, which are stable within the wide potential window of the electrochemical cycle. These surface Mo oxides stabilize adjacent Pt sites, hereby stabilizing the octahedral shape enriched with (111) facets, and lead to increased concentration of Ni in subsurface layers where they are protected against acid dissolution. Consequently, the favorable Pt3Ni(111) structure for the ORR is stabilized on the surface of PtNi/C NPs in acid against voltage cycling. Significantly, the unusual potential-dependent oxygen coverage trend on Mo-doped PtNi/C NPs as revealed by the surface-sensitive Δμ analysis suggests that the Mo dopants may also improve the ORR kinetics by modifying the coordination environments of Pt atoms on the surface. Our studies point out a possible way to stabilize the favorable shape and composition established on conceptual catalytic models in practical nanoscale catalysts.

Entities:  

Keywords:  Mo−PtNi; ORR; acid dissolution; density functional theory; in situ XAS; kinetic Monte Carlo

Year:  2018        PMID: 29272136     DOI: 10.1021/acs.nanolett.7b04007

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  7 in total

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Authors:  Joesene Soto-Pérez; Luis E Betancourt; Pedro Trinidad; Eduardo Larios; Arnulfo Rojas-Pérez; Gerardo Quintana; Kotaro Sasaki; Christopher J Pollock; Louise M Debefve; Carlos R Cabrera
Journal:  ACS Omega       Date:  2021-07-01

4.  Pore Modification and Phosphorus Doping Effect on Phosphoric Acid-Activated Fe-N-C for Alkaline Oxygen Reduction Reaction.

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Journal:  Nanomaterials (Basel)       Date:  2021-06-08       Impact factor: 5.076

5.  Effective Oxygen Reduction Reaction Performance of FeCo Alloys In Situ Anchored on Nitrogen-Doped Carbon by the Microwave-Assistant Carbon Bath Method and Subsequent Plasma Etching.

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Journal:  Nanomaterials (Basel)       Date:  2019-09-08       Impact factor: 5.076

6.  Scalable neutral H2O2 electrosynthesis by platinum diphosphide nanocrystals by regulating oxygen reduction reaction pathways.

Authors:  Hui Li; Peng Wen; Dominique S Itanze; Zachary D Hood; Shiba Adhikari; Chang Lu; Xiao Ma; Chaochao Dun; Lin Jiang; David L Carroll; Yejun Qiu; Scott M Geyer
Journal:  Nat Commun       Date:  2020-08-06       Impact factor: 14.919

7.  Multi-function PtCo nanozymes/CdS nanocrystals@graphene oxide luminophores and K2S2O8/H2O2 coreactants-based dual amplified electrochemiluminescence immunosensor for ultrasensitive detection of anti-myeloperoxidase antibody.

Authors:  Wei Yang; Zheng Zhou; Haiping Wu; Changjin Liu; Bo Shen; Shijia Ding; Yonglie Zhou
Journal:  J Nanobiotechnology       Date:  2021-07-29       Impact factor: 10.435

  7 in total

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