Nature Communications 2015-01-01

Reversible adapting layer produces robust single-crystal electrocatalyst for oxygen evolution.

Ching-Wei Tung, Ying-Ya Hsu, Yen-Ping Shen, Yixin Zheng, Ting-Shan Chan, Hwo-Shuenn Sheu, Yuan-Chung Cheng, Hao Ming Chen

Index: Nat. Commun. 6 , 8106, (2015)

Full Text: HTML

Abstract

Electrochemically converting water into oxygen/hydrogen gas is ideal for high-density renewable energy storage in which robust electrocatalysts for efficient oxygen evolution play crucial roles. To date, however, electrocatalysts with long-term stability have remained elusive. Here we report that single-crystal Co3O4 nanocube underlay with a thin CoO layer results in a high-performance and high-stability electrocatalyst in oxygen evolution reaction. An in situ X-ray diffraction method is developed to observe a strong correlation between the initialization of the oxygen evolution and the formation of active metal oxyhydroxide phase. The lattice of skin layer adapts to the structure of the active phase, which enables a reversible facile structural change that facilitates the chemical reactions without breaking the scaffold of the electrocatalysts. The single-crystal nanocube electrode exhibits stable, continuous oxygen evolution for >1,000 h. This robust stability is attributed to the complementary nature of defect-free single-crystal electrocatalyst and the reversible adapting layer.

Related Compounds

Structure Name/CAS No. Articles
sodiumborohydride Structure sodiumborohydride
CAS:16940-66-2
Sodium hydroxide Structure Sodium hydroxide
CAS:1310-73-2
sodium sulfate Structure sodium sulfate
CAS:7757-82-6
Potassium hydroxide Structure Potassium hydroxide
CAS:1310-58-3
sodium nitrate Structure sodium nitrate
CAS:7631-99-4
3-Ethyl-2,4-pentanedione Structure 3-Ethyl-2,4-pentanedione
CAS:1540-34-7
Cobaltous nitrate hexahydrate Structure Cobaltous nitrate hexahydrate
CAS:10026-22-9