OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Modulating Interfacial Charge Density of NiP2–FeP2 via Coupling with Metallic Cu for Accelerating Alkaline Hydrogen Evolution
Ashwani Kumar, Viet Q. Bui, Jinsun Lee, et al.
ACS Energy Letters (2021) Vol. 6, Iss. 2, pp. 354-363
Closed Access | Times Cited: 198

Showing 1-25 of 198 citing articles:

Self-supported bimetallic phosphides with artificial heterointerfaces for enhanced electrochemical water splitting
Shuang Yang, Ji‐Yu Zhu, Xiaonan Chen, et al.
Applied Catalysis B Environment and Energy (2021) Vol. 304, pp. 120914-120914
Closed Access | Times Cited: 237

Moving beyond bimetallic-alloy to single-atom dimer atomic-interface for all-pH hydrogen evolution
Ashwani Kumar, Viet Q. Bui, Jinsun Lee, et al.
Nature Communications (2021) Vol. 12, Iss. 1
Open Access | Times Cited: 196

Three-Phase Heterojunction NiMo-Based Nano-Needle for Water Splitting at Industrial Alkaline Condition
Guangfu Qian, Jinli Chen, Tianqi Yu, et al.
Nano-Micro Letters (2021) Vol. 14, Iss. 1
Open Access | Times Cited: 185

Restructuring highly electron-deficient metal-metal oxides for boosting stability in acidic oxygen evolution reaction
Xinghui Liu, Shibo Xi, Hyunwoo Kim, et al.
Nature Communications (2021) Vol. 12, Iss. 1
Open Access | Times Cited: 163

Electronic Structure Modulation of Nanoporous Cobalt Phosphide by Carbon Doping for Alkaline Hydrogen Evolution Reaction
Wence Xu, Guilan Fan, Shengli Zhu, et al.
Advanced Functional Materials (2021) Vol. 31, Iss. 48
Closed Access | Times Cited: 157

Discovering ultrahigh loading of single-metal-atoms via surface tensile-strain for unprecedented urea electrolysis
Ashwani Kumar, Xinghui Liu, Jinsun Lee, et al.
Energy & Environmental Science (2021) Vol. 14, Iss. 12, pp. 6494-6505
Closed Access | Times Cited: 127

Electrocatalytic seawater splitting: Nice designs, advanced strategies, challenges and perspectives
Jie Liang, Zixiao Li, Xun He, et al.
Materials Today (2023) Vol. 69, pp. 193-235
Closed Access | Times Cited: 127

Multiphase nanosheet-nanowire cerium oxide and nickel-cobalt phosphide for highly-efficient electrocatalytic overall water splitting
Shuting Wen, Jun Huang, Tongtong Li, et al.
Applied Catalysis B Environment and Energy (2022) Vol. 316, pp. 121678-121678
Closed Access | Times Cited: 121

Boosting ethanol oxidation by NiOOH-CuO nano-heterostructure for energy-saving hydrogen production and biomass upgrading
Hainan Sun, Lili Li, Yahui Chen, et al.
Applied Catalysis B Environment and Energy (2023) Vol. 325, pp. 122388-122388
Closed Access | Times Cited: 97

Dual-metal-organic-framework derived CoP/MoP hybrid as an efficient electrocatalyst for acidic and alkaline hydrogen evolution reaction
Shanshan Liu, Lingjuan Ma, Ji-Sen Li
Journal of Colloid and Interface Science (2022) Vol. 631, pp. 147-153
Closed Access | Times Cited: 96

Constructing Three‐Phase Heterojunction with 1D/3D Hierarchical Structure as Efficient Trifunctional Electrocatalyst in Alkaline Seawater
Qingping Yu, Xiaobin Liu, Guishan Liu, et al.
Advanced Functional Materials (2022) Vol. 32, Iss. 46
Closed Access | Times Cited: 92

Atomically Dispersed Intrinsic Hollow Sites of MM1M (M1 = Pt, Ir; M = Fe, Co, Ni, Cu, Pt, Ir) on FeCoNiCuPtIr Nanocrystals Enabling Rapid Water Redox
Yu Lu, Kang Huang, Xun Cao, et al.
Advanced Functional Materials (2022) Vol. 32, Iss. 19
Closed Access | Times Cited: 79

Metal nitrides for seawater electrolysis
Huashuai Hu, Xiaoli Wang, J. Paul Attfield, et al.
Chemical Society Reviews (2023) Vol. 53, Iss. 1, pp. 163-203
Closed Access | Times Cited: 79

A Self‐Reconstructed Bifunctional Electrocatalyst of Pseudo‐Amorphous Nickel Carbide @ Iron Oxide Network for Seawater Splitting
Hao Zhang, Songyuan Geng, Mengzheng Ouyang, et al.
Advanced Science (2022) Vol. 9, Iss. 15
Open Access | Times Cited: 71

Br-induced P-poor defective nickel phosphide for highly efficient overall water splitting
Tianyi Xu, Dongxu Jiao, Lei Zhang, et al.
Applied Catalysis B Environment and Energy (2022) Vol. 316, pp. 121686-121686
Closed Access | Times Cited: 71

Atomically dispersed Cu coordinated Rh metallene arrays for simultaneously electrochemical aniline synthesis and biomass upgrading
Qiqi Mao, Mu Xu, Wenxin Wang, et al.
Nature Communications (2023) Vol. 14, Iss. 1
Open Access | Times Cited: 62

Recent advances in interface engineering of Fe/Co/Ni-based heterostructure electrocatalysts for water splitting
Hao Ju, Kaili Wu, Chaojie Lyu, et al.
Materials Horizons (2023) Vol. 10, Iss. 7, pp. 2312-2342
Closed Access | Times Cited: 59

Internal Polarization Field Induced Hydroxyl Spillover Effect for Industrial Water Splitting Electrolyzers
Jingyi Xie, Fuli Wang, Yanan Zhou, et al.
Nano-Micro Letters (2023) Vol. 16, Iss. 1
Open Access | Times Cited: 57

Computational chemistry for water-splitting electrocatalysis
Licheng Miao, Wenqi Jia, Xuejie Cao, et al.
Chemical Society Reviews (2024) Vol. 53, Iss. 6, pp. 2771-2807
Closed Access | Times Cited: 55

Electrocatalytic seawater splitting for hydrogen production: Recent progress and future prospects
Changrui Feng, Meng Chen, Ziyuan Yang, et al.
Journal of Material Science and Technology (2023) Vol. 162, pp. 203-226
Closed Access | Times Cited: 54

Superaerophobic/Superhydrophilic Multidimensional Electrode System for High-Current-Density Water Electrolysis
Seulgi Jeong, Ungsoo Kim, Sang-Jin Lee, et al.
ACS Nano (2024) Vol. 18, Iss. 10, pp. 7558-7569
Closed Access | Times Cited: 52

Nanorod Array-Based Hierarchical NiO Microspheres as a Bifunctional Electrocatalyst for a Selective and Corrosion-Resistance Seawater Photo/Electrolysis System
Khadijeh Hemmati, Ashwani Kumar, Amol R. Jadhav, et al.
ACS Catalysis (2023) Vol. 13, Iss. 8, pp. 5516-5528
Closed Access | Times Cited: 47

Metal Electrocatalysts for Hydrogen Production in Water Splitting
Amir Kazemi, Faranak Manteghi, Zari Tehrani
ACS Omega (2024)
Open Access | Times Cited: 42

Efficient and durable seawater electrolysis with a V 2 O 3 -protected catalyst
Huashuai Hu, Zhaorui Zhang, Lijia Liu, et al.
Science Advances (2024) Vol. 10, Iss. 20
Open Access | Times Cited: 35

Modulating interfacial charge distribution of Ni2P-NiSe2 by multiple interface engineering for accelerating water splitting with industry-level activity and stability
Jin‐Tao Ren, Lei Chen, Haoyu Wang, et al.
Applied Catalysis B Environment and Energy (2024) Vol. 347, pp. 123817-123817
Closed Access | Times Cited: 30

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