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Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts

Publication ,  Journal Article
Kang, Y; Snyder, J; Chi, M; Li, D; More, KL; Markovic, NM; Stamenkovic, VR
Published in: Nano Letters
November 12, 2014

The fine balance between activity and durability is crucial for the development of high performance electrocatalysts. The importance of atomic structure and compositional gradients is a guiding principle in exploiting the knowledge from well-defined materials in the design of novel class of core-shell electrocatalysts comprising Ni core, Au interlayer, and PtNi shell (Ni@Au@PtNi). This multimetallic system is found to have the optimal balance of activity and durability due to the synergy between the stabilizing effect of subsurface Au and modified electronic structure of surface Pt through interaction with subsurface Ni atoms. The electrocatalysts with Ni@Au@PtNi core-interlayer-shell structure exhibit high intrinsic and mass activities as well as superior durability for the oxygen reduction reaction with less than 10% activity loss after 10-000 potential cycles between 0.6 and 1.1 V vs the reversible hydrogen electrode.

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Published In

Nano Letters

DOI

EISSN

1530-6992

ISSN

1530-6984

Publication Date

November 12, 2014

Volume

14

Issue

11

Start / End Page

6361 / 6367

Related Subject Headings

  • Nanoscience & Nanotechnology
 

Citation

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Kang, Y., Snyder, J., Chi, M., Li, D., More, K. L., Markovic, N. M., & Stamenkovic, V. R. (2014). Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts. Nano Letters, 14(11), 6361–6367. https://doi.org/10.1021/nl5028205
Kang, Y., J. Snyder, M. Chi, D. Li, K. L. More, N. M. Markovic, and V. R. Stamenkovic. “Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts.” Nano Letters 14, no. 11 (November 12, 2014): 6361–67. https://doi.org/10.1021/nl5028205.
Kang Y, Snyder J, Chi M, Li D, More KL, Markovic NM, et al. Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts. Nano Letters. 2014 Nov 12;14(11):6361–7.
Kang, Y., et al. “Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts.” Nano Letters, vol. 14, no. 11, Nov. 2014, pp. 6361–67. Scopus, doi:10.1021/nl5028205.
Kang Y, Snyder J, Chi M, Li D, More KL, Markovic NM, Stamenkovic VR. Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts. Nano Letters. 2014 Nov 12;14(11):6361–6367.
Journal cover image

Published In

Nano Letters

DOI

EISSN

1530-6992

ISSN

1530-6984

Publication Date

November 12, 2014

Volume

14

Issue

11

Start / End Page

6361 / 6367

Related Subject Headings

  • Nanoscience & Nanotechnology