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How has Wenjing Du's publication output changed over time?
ScholarIQpublication output · 2017–2023
Output grew100% over the shown period — from 1 works in 2017 to 2 in 2023.
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2
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2
201720182020202120222023
What are the most-cited papers on Wenjing Du?
ScholarIQmost cited works
Recent Development in Fabrication of Co Nanostructures and Their Carbon Nanocomposites for Electromagnetic Wave Absorption
Nannan Wu, Wenjing Du, Qian Hu, Sravanthi Vupputuri, Qinglong Jiang
S4210220775. 2020132 CitationsOPEN ACCESS
Strengthened electromagnetic absorption performance derived from synergistic effect of carbon nanotube hybrid with Co@C beads
Nannan Wu, Jing Qiao, Jiurong Liu, Wenjing Du, Dongmei Xu, Wei Liu
S4210207107. 2017103 Citations
A Survey of Tactile‐Sensing Systems and Their Applications in Biomedical Engineering
Yousef Al-Handarish, Olatunji Mumini Omisore, Tobore Igbe, Shipeng Han, Hui Li, Wenjing Du, Jinjie Zhang, Lei Wang
S155241436. 202081 CitationsOPEN ACCESS
Technical and Clinical Progress on Robot-Assisted Endovascular Interventions: A Review
Wenke Duan, Toluwanimi Oluwadara Akinyemi, Wenjing Du, Jun Ma, Xingyu Chen, Fuhao Wang, Olatunji Mumini Omisore, Jingjing Luo, Hongbo Wang, Lei Wang
S96702057. 202354 CitationsOPEN ACCESS
Development of a Fiber Bragg Grating-Based Force Sensor for Minimally Invasive Surgery–Case Study of Ex-Vivo Tissue Palpation
Lu Gan, Wenke Duan, Toluwanimi Oluwadara Akinyemi, Wenjing Du, Olatunji Mumini Omisore, Lei Wang
IEEE Transactions on Instrumentation and Measurement. 202138 CitationsOPEN ACCESS
Related on ScholarIQ
Beijing University of Technology
Institution
Recent Development in Fabrication of Co Nanostructures and Their Carbon Nanocomposites for Electromagnetic Wave Absorption
Paper
Strengthened electromagnetic absorption performance derived from synergistic effect of carbon nanotube hybrid with Co@C beads
Paper
A Survey of Tactile‐Sensing Systems and Their Applications in Biomedical Engineering
Paper
Technical and Clinical Progress on Robot-Assisted Endovascular Interventions: A Review
Paper
Development of a Fiber Bragg Grating-Based Force Sensor for Minimally Invasive Surgery–Case Study of Ex-Vivo Tissue Palpation
Paper