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About the database ScholarIQanswers from OpenAlex & ORCID
How has Lin Zhou's publication output changed over time?
ScholarIQpublication output · 2022–2025
Output declined50% over the shown period — from 2 works in 2022 to 1 in 2025.
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1
2022202320242025
What are the most-cited papers on Lin Zhou?
ScholarIQmost cited works
Broadband internet and enterprise innovation
Mengjun Yang, Shilin Zheng, Lin Zhou
S19645890. 2022118 Citations
Review on Fatigue of Additive Manufactured Metallic Alloys: Microstructure, Performance, Enhancement, and Assessment Methods
Hui Liu, Hanyang Yu, Chuan Guo, Xuliang Chen, Shiyu Zhong, Lin Zhou, Amr Osman, Jian Lü
S99352657. 2023115 CitationsOPEN ACCESS
Self-galloping of a liquid crystal elastomer catenary cable under a steady temperature field
Yong Yu, Lin Zhou, Changshen Du, Fayang Zhu, Yuntong Dai, Dali Ge, Kai Li
S205118121. 202449 Citations
Mediating effect of social support between caregiver burden and quality of life among family caregivers of cancer patients in palliative care units
Yun Zhang, Juejin Li, Yalin Zhang, Chongcheng Chen, Chang Guan, Lin Zhou, Shu Zhang, Xiaoli Chen, Xiaolin Hu
European Journal of Oncology Nursing. 202447 Citations
Investigation on slagging and high-temperature corrosion prevention and control of a 1000 MW ultra supercritical double tangentially fired boiler
Yuxiu Zhong, Xin Wang, Gang Xu, Xinyu Ning, Lin Zhou, Wen Tang, Minghao Wang, Tong Wang, Jun Xu, Long Jiang, Yi Wang, Sheng Su, Song Hu, Jun Xiang
Energy. 202343 Citations
Related on ScholarIQ
China Academy of Engineering Physics
Institution
Broadband internet and enterprise innovation
Paper
Review on Fatigue of Additive Manufactured Metallic Alloys: Microstructure, Performance, Enhancement, and Assessment Methods
Paper
Self-galloping of a liquid crystal elastomer catenary cable under a steady temperature field
Paper
Mediating effect of social support between caregiver burden and quality of life among family caregivers of cancer patients in palliative care units
Paper
Investigation on slagging and high-temperature corrosion prevention and control of a 1000 MW ultra supercritical double tangentially fired boiler
Paper