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タイトル: Phase Control of Solid-Solution Nanoparticles beyond the Phase Diagram for Enhanced Catalytic Properties
著者: Wu, Dongshuang
Kusada, Kohei
Aspera, Susan Meñez
Nakanishi, Hiroshi
Chen, Yanna
Seo, Okkyun
Song, Chulho
Kim, Jaemyung
Hiroi, Satoshi
Sakata, Osami
Yamamoto, Tomokazu
Matsumura, Syo
Nanba, Yusuke
Koyama, Michihisa
Ogiwara, Naoki
Kawaguchi, Shogo
Kubota, Yoshiki
Kitagawa, Hiroshi  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0001-6955-3015 (unconfirmed)
著者名の別形: 吴, 冬霜
草田, 康平
荻原, 直希
北川, 宏
キーワード: Palladium
Radiology
Alloys
Crystal structure
Catalysts
Crystal structure
nanoparticles
alloy
palladium
ruthenium
electrocatalysis
oxygen evolution
発行日: Mar-2022
出版者: American Chemical Society (ACS)
誌名: ACS Materials Au
巻: 2
号: 2
開始ページ: 110
終了ページ: 116
抄録: The crystal structure, which intrinsically affects the properties of solids, is determined by the constituent elements and composition of solids. Therefore, it cannot be easily controlled beyond the phase diagram because of thermodynamic limitations. Here, we demonstrate the first example of controlling the crystal structures of a solid-solution nanoparticle (NP) entirely without changing its composition and size. We synthesized face-centered cubic (fcc) or hexagonal close-packed (hcp) structured PdxRu₁–x NPs (x = 0.4, 0.5, and 0.6), although they cannot be synthesized as bulk materials. Crystal-structure control greatly improves the catalytic properties; that is, the hcp-PdxRu₁–x NPs exceed their fcc counterparts toward the oxygen evolution reaction (OER) in corrosive acid. These NPs only require an overpotential (η) of 200 mV at 10 mA cm⁻², can maintain the activity for more than 20 h, greatly outperforming the fcc-Pd₀.₄Ru₀.₆ NPs (η = 280 mV, 9 min), and are among the most efficient OER catalysts reported. Synchrotron X-ray-based spectroscopy, atomic-resolution electron microscopy, and density functional theory (DFT) calculations suggest that the enhanced OER performance of hcp-PdRu originates from the high stability against oxidative dissolution.
著作権等: Copyright © 2021 The Authors. Published by American Chemical Society
This is an open access article published under a Creative Commons Non-Commercial NoDerivative Works (CC-BY-NC-ND) Attribution License.
URI: http://hdl.handle.net/2433/276812
DOI(出版社版): 10.1021/acsmaterialsau.1c00048
PubMed ID: 36855761
出現コレクション:学術雑誌掲載論文等

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