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About the database ScholarIQanswers from OpenAlex & ORCID
How has Weiyi Li's publication output changed over time?
ScholarIQpublication output · 2005–2025
Output grew0% over the shown period — from 1 works in 2005 to 1 in 2025.
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2005200620112012201420162018201920212025
What are the most-cited papers on Weiyi Li?
ScholarIQmost cited works
A three mechanism model to describe fouling of microfiltration membranes
Chase Duclos‐Orsello, Weiyi Li, Chia‐Chi Ho
S119469986. 2006283 Citations
A novel hybrid process of reverse electrodialysis and reverse osmosis for low energy seawater desalination and brine management
Weiyi Li, William B. Krantz, Emile Cornelissen, Jan W. Post, Arne Verliefde, Chuyang Y. Tang
S109565702. 2012192 Citations
Fast, volumetric live-cell imaging using high-resolution light-field microscopy
Haoyu Li, Changliang Guo, Deborah Kim, Weiyi Li, Yelena M. Altshuller, Bryce Schroeder, Wenhao Liu, Yizhi Meng, Jarrod B. French, Ken-Ichi Takamaru, Michael A. Frohman, Shu Jia
S104118869. 2018118 CitationsOPEN ACCESS
Novel Approach To Characterizing the Growth of a Fouling Layer during Membrane Filtration via Optical Coherence Tomography
Yiben Gao, Sanna Haavisto, Weiyi Li, Chuyang Y. Tang, Juha Salmela, Anthony G. Fane
Environmental Science & Technology. 2014117 Citations
Analyzing the Evolution of Membrane Fouling via a Novel Method Based on 3D Optical Coherence Tomography Imaging
Weiyi Li, Xin Liu, Yining Wang, Tzyy Haur Chong, Chuyang Y. Tang, Anthony G. Fane
Environmental Science & Technology. 2016104 Citations
Related on ScholarIQ
Nanjing University of Information Science and Technology
Institution
A three mechanism model to describe fouling of microfiltration membranes
Paper
A novel hybrid process of reverse electrodialysis and reverse osmosis for low energy seawater desalination and brine management
Paper
Fast, volumetric live-cell imaging using high-resolution light-field microscopy
Paper
Novel Approach To Characterizing the Growth of a Fouling Layer during Membrane Filtration via Optical Coherence Tomography
Paper
Analyzing the Evolution of Membrane Fouling via a Novel Method Based on 3D Optical Coherence Tomography Imaging
Paper