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:

Mxene hybrid conductive hydrogels with mechanical flexibility, frost-resistance, photothermoelectric conversion characteristics and their multiple applications in sensing
Mengjuan Hou, Maolin Yu, Weiling Liu, et al.
Chemical Engineering Journal (2024) Vol. 483, pp. 149299-149299
Closed Access | Times Cited: 55

Showing 1-25 of 55 citing articles:

Triboelectric nanogenerators based on hydrated lithium ions incorporated double-network hydrogels for biomechanical sensing and energy harvesting at low temperature
Hongyi Zhang, Qiannian Yang, Lijian Xu, et al.
Nano Energy (2024) Vol. 125, pp. 109521-109521
Closed Access | Times Cited: 41

Tough, self-healing, adhesive double network conductive hydrogel based on gelatin-polyacrylamide covalently bridged by oxidized sodium alginate for durable wearable sensors
Zengsheng Wang, Lijian Xu, Weiling Liu, et al.
International Journal of Biological Macromolecules (2024) Vol. 276, pp. 133802-133802
Closed Access | Times Cited: 21

Intrinsic Anti‐Freezing, Tough, and Transparent Hydrogels for Smart Optical and Multi‐Modal Sensing Applications
Xinyue Zhang, Lin Ye, Shengtao Shen, et al.
Advanced Materials (2025)
Closed Access | Times Cited: 4

Single/Multi-Network Conductive Hydrogels—A Review
N. Hasan, Md Murshed Bhuyan, Jae-Ho Jeong
Polymers (2024) Vol. 16, Iss. 14, pp. 2030-2030
Open Access | Times Cited: 9

Design of Double Strains in Triboelectric Nanogenerators toward Improving Human Behavior Monitoring
Yutong Wang, Wenlong Chen, Rui Sheng, et al.
Langmuir (2025)
Closed Access | Times Cited: 1

A chitosan-based adhesive with high flame retardancy and superior bonding strength fabricated by interface engineering
Tongda Liu, Yating Shao, Xu Zhang, et al.
International Journal of Biological Macromolecules (2025), pp. 140984-140984
Closed Access | Times Cited: 1

Zinc-ion hybrid supercapacitors with hierarchically N-doped porous carbon electrodes and ZnSO4/ZnI2 redox electrolyte exhibit boosted energy density
Yang Yang, Yunlong Zhou, Peng Ji, et al.
Colloids and Surfaces A Physicochemical and Engineering Aspects (2024) Vol. 694, pp. 134122-134122
Closed Access | Times Cited: 5

Self-repairing thermoplastic polyurethane-based triboelectric nanogenerator with molybdenum disulfide charge-trapping for advanced wearable devices
Duc Khanh Tran, Sushmitha Veeralingam, Jong-Woong Kim
Nano Energy (2024) Vol. 127, pp. 109714-109714
Closed Access | Times Cited: 5

Tunable and fast-cured hyaluronic acid hydrogel inspired on catechol architecture for enhanced adhesion property
Fan Yang, Yunlu Chen, Wentao Zhang, et al.
International Journal of Biological Macromolecules (2024) Vol. 271, pp. 132119-132119
Closed Access | Times Cited: 5

Toward next-generation wearable sensors based on MXene hydrogels
Qinglong He, Chendong Zhao, Hao Chen, et al.
Journal of Materials Chemistry A (2024) Vol. 12, Iss. 38, pp. 25622-25642
Closed Access | Times Cited: 5

MXene Hydrogels for Soft Multifunctional Sensing: A Synthesis‐Centric Review
Umay Amara, Lingtian Xu, Iftikhar Hussain, et al.
Small (2024)
Closed Access | Times Cited: 5

A flexible wearable sensor based on the multiple interaction and synergistic effect of the hydrogel components with anti-freezing, low swelling for human motion detection and underwater communication
Xingru Duan, Yongheng Wang, Tongda Lei, et al.
International Journal of Biological Macromolecules (2025) Vol. 295, pp. 139713-139713
Closed Access

Recent progress in flexible materials for wearable devices for body function and athletic performance monitoring
Yang Ming, Kelin Peng, Zhen Li, et al.
Chemical Engineering Journal (2025), pp. 159659-159659
Closed Access

Graphene‐Doped Hydrogels with Enhanced Conductivity and Stretchability for All‐Weather Wearable Devices
Yi Wang, Yixiao Li, Yajie Zhang, et al.
Advanced Functional Materials (2025)
Closed Access

Facile fabrication of biomimetic and conductive hydrogels with robust mechanical properties and 3D printability for wearable strain sensors in wireless human-machine interfaces
Milad Nezafati, Nahid Salimiyan, Sepehr Salighehdar, et al.
Chemical Engineering Journal (2025), pp. 161112-161112
Closed Access

Polyvinyl Alcohol–Reinforced Silk Nanofiber/MXene Composite Aerogel as Wearable Sensors for Detecting Human Motion
Jie Chen, Zhenzhen Lu, Jingling Jin, et al.
Surfaces and Interfaces (2025), pp. 106220-106220
Closed Access

A review on high-performance flexible thermoelectrics: material, device, and applications
Abdul Basit, Jiwu Xin, Xin Li, et al.
Microstructures (2025) Vol. 5, Iss. 2
Open Access

Design Strategies and Emerging Applications of Conductive Hydrogels in Wearable Sensing
Yingchun Li, Shaozhe Tan, X Y Zhang, et al.
Gels (2025) Vol. 11, Iss. 4, pp. 258-258
Open Access

Advances of conductive hydrogel designed for flexible electronics: A review
Guanzhou Zhu, Negar Javanmardia, Lili Qian, et al.
International Journal of Biological Macromolecules (2024), pp. 136115-136115
Closed Access | Times Cited: 4

An all paper based triboelectric nanogenerators with high output performance in extreme environment manufactured by multi-layer papers forming technology
Changmei Lin, Jun Chen, Haitao Huang, et al.
Chemical Engineering Journal (2024) Vol. 488, pp. 151008-151008
Closed Access | Times Cited: 3

A flexible, stretchable and wearable strain sensor based on physical eutectogels for deep learning-assisted motion identification
Dandan Liu, Shiyu Wang, Hui Wang, et al.
Journal of Materials Chemistry B (2024) Vol. 12, Iss. 25, pp. 6102-6116
Closed Access | Times Cited: 3

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