0 Datasets
0 Files
Get instant academic access to this publication’s datasets.
Yes. After verification, you can browse and download datasets at no cost. Some premium assets may require author approval.
Files are stored on encrypted storage. Access is restricted to verified users and all downloads are logged.
Yes, message the author after sign-up to request supplementary files or replication code.
Join 50,000+ researchers worldwide. Get instant access to peer-reviewed datasets, advanced analytics, and global collaboration tools.
✓ Immediate verification • ✓ Free institutional access • ✓ Global collaborationJoin our academic network to download verified datasets and collaborate with researchers worldwide.
Get Free AccessA simple strategy for developing a cost-effective and efficient Ir-based catalyst toward the oxygen evolution reaction (OER) is to construct a core–shell structure with most of the Ir atoms serving as reactive sites on the surface. However, it has been challenging to achieve a precise control over the thickness of the Ir shell from one to several atomic layers and thus optimize the OER performance. Here, we report a facile synthesis of Pd@IrnL (n: the number of Ir atomic layers) core–shell nanocubes with the shell thickness controlled from one to four atomic layers. Their OER activities showed a volcano-type dependence on the number of Ir atomic layers, with a maximum point corresponding to n = 3, which can be attributed to Pd–Ir intermixing, and possible ligand and/or strain effects. Owing to the better passivation for the Pd cores and the formation of a more stable phase during electrolysis, the Pd@IrnL nanocubes with thicker Ir overlayers exhibited greater OER durability. The Pd@Ir3L nanocubes delivered the best activity and durability toward OER with η as low as 245 mV at 10 mA·cmgeo–2 and a mass activity of 3.33 A·mgIr–1 at η = 300 mV. Both values were much better than those of commercial Ir/C and represent the best set of data among the Ir-based core–shell OER catalysts in acidic media.
Jiawei Zhu, Zhiheng Lyu, Zitao Chen, Minghao Xie, Miaofang Chi, Wanqin Jin, Younan Xia (2019). Facile Synthesis and Characterization of Pd@Ir<sub><i>n</i>L</sub> (<i>n</i> = 1–4) Core–Shell Nanocubes for Highly Efficient Oxygen Evolution in Acidic Media. , 31(15), DOI: https://doi.org/10.1021/acs.chemmater.9b02011.
Datasets shared by verified academics with rich metadata and previews.
Authors choose access levels; downloads are logged for transparency.
Students and faculty get instant access after verification.
Type
Article
Year
2019
Authors
7
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1021/acs.chemmater.9b02011
Access datasets from 50,000+ researchers worldwide with institutional verification.
Get Free Access