Please use this identifier to cite or link to this item: http://hdl.handle.net/10497/24883
Title: 
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Issue Date: 
Feb-2023
Citation: 
Liu, Y., Sakthivel, T., Hu, F., Tian, Y., Wu, D., Ang, E. H., Liu, H., Guo, S., Peng, S., & Dai, Z. (2023). Enhancing the d/p-band center proximity with amorphous-crystalline interface coupling for boosted pH-robust water electrolysis. Advanced Energy Materials. Advance online publication. https://doi.org/10.1002/aenm.202203797
Journal: 
Advanced Energy Materials
Abstract: 
Rationalizing non-precious pH-robust electrocatalysts is a crucial priority and required for multi-scenario hydrogen production customization. Herein, an amorphous–crystalline CoBOx/NiSe heterostructure is theoretically profiled and constructed for efficient and pH-robust water electrolysis. The crystalline lattice confinement induces a Co‒Co bond shortening and a B-site delocalization on amorphous CoBOx, resulting in a decreased d-p band center difference (Δεd-p) toward the balanced intermediates adsorption/desorption. Accordingly, the CoBOx/NiSe heterostructure exhibits efficient and robust hydrogen/oxygen evolution reaction (HER/OER) catalytic activity in different electrolytes. Of particular note, it achieves ultralow overpotentials in both the beyond-Pt HER (14.5 mV) and OER (229.1 mV) at 10 mA cm−2 under an alkaline electrolyte, and reaches an industrial-level OER current density of 2 A cm−2. Water electrolysis is stably delivered with a low η10 voltage of 1.48 V. The incorporation of such d-p orbitals at the amorphous–crystalline interface puts forward new opportunities in rationally designing advanced non-precious electrocatalysts for water electrolysis.
URI: 
ISSN: 
1614-6832 (print)
1614-6840 (online)
DOI: 
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