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About the database ScholarIQanswers from OpenAlex & ORCID
How has Jiayuan Li's publication output changed over time?
ScholarIQpublication output · 2012–2025
Output grew0% over the shown period — from 1 works in 2012 to 1 in 2025.
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20122017201820192020202120222025
What are the most-cited papers on Jiayuan Li?
ScholarIQmost cited works
RIFT: Multi-Modal Image Matching Based on Radiation-Variation Insensitive Feature Transform
Jiayuan Li, Qingwu Hu, Mingyao Ai
S4210173141. 2019617 Citations
Site-specific allylic C–H bond functionalization with a copper-bound N-centred radical
Jiayuan Li, Zhihan Zhang, Lianqian Wu, Wen Zhang, Pinhong Chen, Zhenyang Lin, Guosheng Liu
Nature. 2019338 Citations
Feasibility assessment of the carbon emissions peak in China's construction industry: Factor decomposition and peak forecast
Bo Li, Shuwan Han, Yafei Wang, Yafei Wang, Yafei Wang, Yafei Wang, Jiayuan Li, Yong Wang, Yong Wang
The Science of The Total Environment. 2019203 Citations
Energy-Efficient Toque Allocation Design of Traction and Regenerative Braking for Distributed Drive Electric Vehicles
Xudong Zhang, Dietmar Göhlich, Jiayuan Li
S10936095. 2017152 Citations
Ecotoxicological effects of sulfonamides and fluoroquinolones and their removal by a green alga (Chlorella vulgaris) and a cyanobacterium (Chrysosporum ovalisporum)
Shan Chen, Wei Zhang, Jiayuan Li, Mingzhe Yuan, Jiahui Zhang, Fan Xu, Houtao Xu, Xiaoyan Zheng, Liqing Wang
Environmental Pollution. 2020141 Citations
Related on ScholarIQ
Jiangxi University of Traditional Chinese Medicine
Institution
RIFT: Multi-Modal Image Matching Based on Radiation-Variation Insensitive Feature Transform
Paper
Site-specific allylic C–H bond functionalization with a copper-bound N-centred radical
Paper
Feasibility assessment of the carbon emissions peak in China's construction industry: Factor decomposition and peak forecast
Paper
Energy-Efficient Toque Allocation Design of Traction and Regenerative Braking for Distributed Drive Electric Vehicles
Paper
Ecotoxicological effects of sulfonamides and fluoroquinolones and their removal by a green alga (Chlorella vulgaris) and a cyanobacterium (Chrysosporum ovalisporum)
Paper