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Skeletal Octahedral Nanoframe with Cartesian Coordinates via Geometrically Precise Nanoscale Phase Segregation in a Pt@Ni Core-Shell Nanocrystal

Authors
Oh, AramBaik, HionsuckChoi, Dong ShinCheon, Jae YeongKim, ByeongyoonKim, HeejinKwon, Seong JungJoo, Sang HoonJung, YousungLee, Kwangyeol
Issue Date
3월-2015
Publisher
AMER CHEMICAL SOC
Keywords
platinum; nanoparticles; crystal growth; alloy; phase segregation
Citation
ACS NANO, v.9, no.3, pp.2856 - 2867
Indexed
SCIE
SCOPUS
Journal Title
ACS NANO
Volume
9
Number
3
Start Page
2856
End Page
2867
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/94284
DOI
10.1021/nn5068539
ISSN
1936-0851
Abstract
Catalytic properties of nanoparticles can be significantly enhanced by controlling nanoscale alloying and its structure. In this work, by using a facet-controlled Pt@Ni core shell octahedron nanoparticle, we show that the nanoscale phase segregation can have directionality and be geometrically controlled to produce a Ni octahedron that is penetrated by Pt atoms along three orthogonal Cartesian axes and is coated by Pt atoms along its edges. This peculiar anisotropic diffusion of Pt core atoms along the 000) vertex, and then toward the < 110 > edges, is explained via the minimum strain energy for Ni Ni pair interactions. The selective removal of the Ni-rich phase by etching then results in structurally fortified Pt-rich skeletal PtNi alloy framework nanostructures. Electrochemical evaluation of this hollow nanoframe suggests that the oxygen reduction reaction (ORR) activity is greatly improved compared to conventional Pt catalysts.
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