Understanding the evolution of high-entropy oxide OER electrocatalyst with anion regulation DOI
Dan Wang, Yihang Yu, Huan He

et al.

International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 92, P. 639 - 647

Published: Oct. 29, 2024

Language: Английский

Cu–Bi Bimetallic Sulfides Loaded on Two-Dimensional Ti3C2Tx MXene for Efficient Electrocatalytic Nitrogen Reduction under Ambient Conditions DOI
Rui Zhang,

Yanjun Xue,

Min Ma

et al.

Nano Letters, Journal Year: 2024, Volume and Issue: 24(33), P. 10297 - 10304

Published: Aug. 12, 2024

In this paper, Ti

Language: Английский

Citations

31

Recent advances in NiFe layered double hydroxide electrocatalysts for seawater oxidation DOI
Hongxin Wang, Haibin Wang, Zhaobo Wang

et al.

Journal of Alloys and Compounds, Journal Year: 2024, Volume and Issue: 1002, P. 175368 - 175368

Published: June 27, 2024

Language: Английский

Citations

14

Advances in high entropy oxides: synthesis, structure, properties and beyond DOI
Chang Liu, Shun Li, Yunpeng Zheng

et al.

Progress in Materials Science, Journal Year: 2024, Volume and Issue: 148, P. 101385 - 101385

Published: Oct. 10, 2024

Language: Английский

Citations

14

Synergy of atom doping and defect construction in marigold-like Zn3In2S6 for improved photocatalytic hydrogen production DOI
Zhihui Yang, Xinyu Wang, Jiali Ren

et al.

Materials Today Physics, Journal Year: 2024, Volume and Issue: 46, P. 101484 - 101484

Published: June 18, 2024

Language: Английский

Citations

8

Structural regulation of three-dimensional bismuth vanadate nanochannels for excellent visible light photocatalytic nitrogen fixation DOI
Xiaoyi Wang, Junhua You,

Yanjun Xue

et al.

Applied Catalysis B Environment and Energy, Journal Year: 2024, Volume and Issue: 363, P. 124817 - 124817

Published: Nov. 12, 2024

Language: Английский

Citations

5

High-Entropy Oxides as Electrocatalysts for the Oxygen Evolution Reaction: A Mini Review DOI
Yueqi Huang, Dan Wang, Yihang Yu

et al.

Energy & Fuels, Journal Year: 2024, Volume and Issue: 38(15), P. 13661 - 13684

Published: July 18, 2024

Language: Английский

Citations

4

Sub‐3 nm ultrafine Cu2O for electroreduction of carbon dioxide to ethane DOI
Junhua You, Junpeng Chen,

Xu Wang

et al.

Separation and Purification Technology, Journal Year: 2024, Volume and Issue: 354, P. 129109 - 129109

Published: Aug. 9, 2024

Language: Английский

Citations

4

The latest advances in the deep reconstruction of pre-catalysts for the oxygen evolution reaction DOI
Haibin Wang, Hongxin Wang, Qiming Hu

et al.

Journal of Alloys and Compounds, Journal Year: 2024, Volume and Issue: unknown, P. 177225 - 177225

Published: Oct. 1, 2024

Language: Английский

Citations

4

Self-assembly of snowflake-like Cu2S with ultrathin ZnIn2S4 nanosheets to form S-scheme heterojunctions for photocatalytic hydrogen production DOI
Zhihui Yang, Jiali Ren, Junhua You

et al.

Journal of Colloid and Interface Science, Journal Year: 2024, Volume and Issue: 680, P. 124 - 136

Published: Nov. 15, 2024

Language: Английский

Citations

4

CoCrNi‐Based High‐Efficiency High‐Entropy Alloy Nanoelectrocatalysts Al0.3Cu0.1(CoCrNi‐X)0.6 for OER Application DOI Open Access
Guangyi Liu, Yao Zhao, Xuanhao Li

et al.

ChemistrySelect, Journal Year: 2025, Volume and Issue: 10(10)

Published: March 1, 2025

Abstract To find nonprecious metal high‐entropy alloy nanoparticles (HEA‐NPs) electrocatalysts that perform even better in electrolytic water OER and to learn more about the reasons for their superior performance. This experiment successfully prepared nanocatalysts Al 0.3 Cu 0.1 (CoCrNi‐X) 0.6 (X = Mo, Ti V) by simple mechanical ball milling. The electrocatalyst (CoCrNiMo) exhibits excellent reaction kinetics, with an overpotential of only 243 mV a Tafel slope 191.59 mV·dec −1 at current density 10 mA·cm −2 . It also has low impedance hinders charge transfer during catalysis can maintain catalytic stability over 50 h. activity than other three catalysts, which is attributed fine nanostructure complex duplex crystal structure (FCC + BCC), resulting specific surface area having active sites as well synergistic promotion Mo elements, was most conducive accelerating OER. indicates element optimal doping among above followed V Ti, significant field catalytically elements nanostructured HEA electrodes enhance performance catalysts energy conservation.

Language: Английский

Citations

0