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:

Solid‐State Electrolytes for Sodium Metal Batteries: Recent Status and Future Opportunities
Yanfeng Dong, Pengchao Wen, Haodong Shi, et al.
Advanced Functional Materials (2023) Vol. 34, Iss. 5
Closed Access | Times Cited: 57

Showing 26-50 of 57 citing articles:

Research progress of inorganic solid electrolyte materials for all-solid-state sodium-ion batteries
Xiaoshan Li, Jin Liang, Cao Xin, et al.
Rare Metals (2025)
Closed Access

Mn Dopant Na3Zr2Si2PO12 with Enhanced Ionic Conductivity for Quasi-Solid-State Sodium–Metal Battery
Yuyao Zhang, Tianyi Gao, Jiameng Yu, et al.
ACS Applied Materials & Interfaces (2025)
Closed Access

Dual thermal-stimulated self-adhesive mixed-phase interface to enable ultra-long cycle life of solid-state sodium metal batteries
Gaofeng Du, Shuhao Wang, Zhaoming Tong, et al.
Energy & Environmental Science (2025)
Closed Access

Enabling Long‐Life All‐Solid‐State Sodium Metal Batteries via in situ Construction of a Stable Solid Electrolyte Interphase
Fangxin Ling, Jiefeng Diao, Yu Yao, et al.
Advanced Functional Materials (2025)
Closed Access

Highly stable anode-free solid-state sodium batteries enabled by electrostatic shielding and nitrogenated interphase
Wuliang Feng, Caixia Li, Peiyao Wang, et al.
Chemical Engineering Journal (2025), pp. 162467-162467
Closed Access

Ultra-stable all-solid-state lithium metal batteries facilitated by in-situ LiF-rich single-ion conductor composite polymer electrolytes
W. Lin, Rong Yang, A. D. Jiang, et al.
Chemical Engineering Journal (2025), pp. 162820-162820
Closed Access

Fast Charging and Low Temperature Capabilities of Sodium Solid-State Batteries Enabled by Thin NASICON Bilayer Architecture
P. W. Jaschin, Christopher R. Tang, Eric D. Wachsman
ACS Energy Letters (2025), pp. 2610-2616
Closed Access

Recent advances in doping Na3Zr2Si2PO12 (NASICON) solid-state electrolyte for sodium-ion batteries
Syed Rizvi, Ibrahim Aladhyani, Yi Ding, et al.
Nano Energy (2024) Vol. 129, pp. 110009-110009
Closed Access | Times Cited: 3

Optimizing all-solid-state sodium-ion batteries: Insights from a P2D Model on NaSICON-based polymer–ceramic electrolyte
Felix Gerbig, J. R. Kuhn, Hermann Nirschl
Energy Reports (2024) Vol. 13, pp. 105-116
Closed Access | Times Cited: 3

Chlorine-Rich Na6−xPS5−xCl1+x: A Promising Sodium Solid Electrolyte for All-Solid-State Sodium Batteries
Yi Zhang, Haoran Zheng, Jiale You, et al.
Materials (2024) Vol. 17, Iss. 9, pp. 1980-1980
Open Access | Times Cited: 2

Harnessing the Potential of (Quasi) Solid‐State Na‐Air/O₂ Batteries: Strategies and Future Directions for Next‐Generation Energy Storage Solutions
Mohamed Yahia, Idoia Ruiz de Larramendi, Nagore Ortiz‐Vitoriano
Advanced Energy Materials (2024) Vol. 14, Iss. 35
Open Access | Times Cited: 2

High elongation, low hysteresis, fatigue resistant gel electrolyte for supercapacitor and strain sensor
Zhuang Zhao, Youjie Rong, Pengdi Cui, et al.
Journal of Power Sources (2024) Vol. 622, pp. 235307-235307
Closed Access | Times Cited: 2

Interface engineering of sodium metal anode for all-solid-state sodium batteries
Xianjian Tang, Weibo Han, Yue Zhang, et al.
Journal of Power Sources (2024) Vol. 623, pp. 235397-235397
Closed Access | Times Cited: 2

Influence of calcium-doped on the conductivity of NASICON-type Na3Zr2Si2PO4 solid electrolyte
S.K. Guan, Jiayao Lu, Ying Li, et al.
Ceramics International (2024)
Closed Access | Times Cited: 2

Understanding the influence of local structure distortions on Na-ion migration in perovskite solid electrolytes
Frederick P. Marlton, Frederick Z.T. Yang, S. Michelle Everett, et al.
Journal of Power Sources (2024) Vol. 617, pp. 235154-235154
Open Access | Times Cited: 1

Solvent stability of halide solid electrolytes towards wet processing
Shuhao Wang, Jianing Liang, Shiya Li, et al.
Energy storage materials (2024) Vol. 72, pp. 103726-103726
Closed Access | Times Cited: 1

Performance Investigations on All-Solid-StatePolymer-Ceramic Sodium-Ion Batteries through aSpatially Resolved Electrochemical Model
Felix Gerbig, Anshuman Chauhan, S. Gietl, et al.
Journal of The Electrochemical Society (2024) Vol. 171, Iss. 9, pp. 090515-090515
Open Access | Times Cited: 1

A Cost-Effect Na and K Ion-Conducting Amorphous Covalent Organic Framework with High Ion Conductivity
Wonmi Lee, Haochen Li, Diprajit Biswas, et al.
ACS Applied Energy Materials (2024) Vol. 8, Iss. 1, pp. 569-580
Closed Access | Times Cited: 1

Controlling surface chemistry in cold sintering to advance battery materials
Yi-Chen Lan, Zane Grady, Sinan Dursun, et al.
Open Ceramics (2024) Vol. 19, pp. 100639-100639
Open Access

A quasi-zero-strain layered Nb4P2S21 cathode for high-energy solid-state polymer Na–metal batteries
Xueyang Tu, Baixin Peng, Xue Wang, et al.
Inorganic Chemistry Frontiers (2024) Vol. 11, Iss. 18, pp. 6118-6126
Closed Access

2D organic nanosheets of self-assembled guanidinium derivative for efficient single sodium-ion conduction: rationalizing morphology editing and ion conduction
Anik Kumar Dey, Selvasundarasekar Sam Sankar, Subrata Kundu, et al.
Chemical Science (2024) Vol. 15, Iss. 39, pp. 16321-16330
Open Access

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