MetasurfaceāEmpowered Optical Multiplexing and Multifunction ā Advanced Materials (2020), 253 citations. š
Broadband Cross-Polarization Conversion in Transmission Mode ā Optics Letters (2015), 247 citations. š”
High-Quality-Factor Multiple Fano Resonances for Refractive Index Sensing ā Optics Letters (2018), 206 citations. š¬
Ultrahighly Saturated Structural Colors Enhanced by Multipolar-Modulated Metasurfaces ā Nano Letters (2019), 184 citations. š
Broadband Linear-to-Circular Polarization Converter ā Scientific Reports (2015), 177 citations. š
From Single-Dimensional to Multidimensional Manipulation of Optical Waves ā Advanced Materials (2019), 172 citations. š
Metasurface Enabled Wide-Angle Fourier Lens ā Advanced Materials (2018), 157 citations. š
Dynamically Tunable Broadband Infrared Anomalous Refraction ā Advanced Optical Materials (2015), 145 citations. š„
Polarization-Sensitive Structural Colors ā Advanced Optical Materials (2018), 131 citations. šØ
Optical Polarization Encoding Using GrapheneāLoaded Plasmonic Metasurfaces ā Advanced Optical Materials (2016), 115 citations.
Conclusion
Assoc. Prof. Dr. Wenwei Liu is an outstanding candidate for the Best Researcher Award, given his innovative research, high-impact publications, and leadership in advancing the field of optics. His work in light-matter interactions and micro/nano-structured systems is both theoretically advanced and practically relevant. While he may benefit from greater international collaboration and an emphasis on technology transfer, his current achievements position him as a strong contender for the award. His demonstrated excellence in research, combined with his potential for future breakthroughs, aligns well with the award’s objectives.