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About the database ScholarIQanswers from OpenAlex & ORCID
How has Ziyi Wang's publication output changed over time?
ScholarIQpublication output · 2013–2025
Output grew0% over the shown period — from 1 works in 2013 to 1 in 2025.
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2013201920202022202320242025
What are the most-cited papers on Ziyi Wang?
ScholarIQmost cited works
Photothermal antibacterial materials to promote wound healing
Luning He, Donghua Di, Xinhui Chu, Xinlin Liu, Ziyi Wang, Junya Lu, Siling Wang, Qinfu Zhao
S161954266. 2023303 Citations
Improved EIS Performance of an Electrochemical Cytosensor Using Three-Dimensional Architecture Au@BSA as Sensing Layer
Chenyi Hu, Da‐Peng Yang, Ziyi Wang, Lili Yu, Junliang Zhang, Nengqin Jia
Analytical Chemistry. 201393 Citations
Molecular Structure of Glycogen in <i>Escherichia coli</i>
Liang Wang, Qinghua Liu, Xinle Tan, Ziyi Wang, Mengmeng Wang, Michael J. Wise, Chengcheng Li, Chao Ma, Enpeng Li, Bin Deng, Yan Du, Daoquan Tang, Robert G. Gilbert
S11629336. 201955 CitationsOPEN ACCESS
Stiff extracellular matrix drives the differentiation of mesenchymal stem cells toward osteogenesis by the multiscale 3D genome reorganization
Jing Na, Chengzheng Tai, Ziyi Wang, Zhijie Yang, Xinyuan Chen, Jing Zhang, Lisha Zheng, Yubo Fan
Biomaterials. 202452 Citations
Polarization-sensitive multi-frequency switches and high-performance slow light based on quadruple plasmon-induced transparency in a patterned graphene-based terahertz metamaterial
Yuhui Li, Yiping Xu, Jiabao Jiang, Shubo Cheng, Zao Yi, Guohui Xiao, Xianwen Zhou, Ziyi Wang, Zhanyu Chen
S181332294. 202247 Citations
Related on ScholarIQ
ARC Centre of Excellence for Plant Success in Nature and Agriculture
Institution
Photothermal antibacterial materials to promote wound healing
Paper
Improved EIS Performance of an Electrochemical Cytosensor Using Three-Dimensional Architecture Au@BSA as Sensing Layer
Paper
Molecular Structure of Glycogen in <i>Escherichia coli</i>
Paper
Stiff extracellular matrix drives the differentiation of mesenchymal stem cells toward osteogenesis by the multiscale 3D genome reorganization
Paper
Polarization-sensitive multi-frequency switches and high-performance slow light based on quadruple plasmon-induced transparency in a patterned graphene-based terahertz metamaterial
Paper