Paper and Patent

Publication is not the end of research.

Selected Papers

† Co-first/equal contribution | * Corresponding author

2026

[27] O. A. M. Abdelraouf, C. L. Lay, H. Ge, Z. Zhou, Y. Zhang, Y. Liu, Y. F. Chen, A. J. Sim, and Z. Wang*,
“High Numerical Aperture Metalens for the Deep Ultraviolet,”
Advanced Materials, 2026.

[26] O. A. M. Abdelraouf, T. Wang, and Z. Wang*,
“Recent Developments in Deep-Ultraviolet Flat Optics,”
Nanophotonics, 2026.

[25] R. Lin, T. H. Do, X. V. Ho, Q. Y. S. Wu, Z. Wang, E. S. J. Hao, X. W. Chua, Z. E. Ooi, et al.,
“Bipolar Photovoltaic Effect in InSe/MoO₃ van der Waals Heterostructure for Spontaneous Light Polarization Detection,”
InfoMat, 2026.

[24] A. Elbanna, Z. Wang, X. Liang, H. Liu, J. Pan, Z. X. Shen, and J. Teng,

“Synergistic Cavity-Enhanced Photoresponse in Transition Metal Dichalcogenide Heterostructures,”
npj Nanophotonics 3, 6 (2026).


2025

[23] H. Ge, J. Liu, M. Šebek, Z. Li, W. Fu, , Z. Wang, Z. Wang*.
“AI-Assisted Wafer-Scale Exfoliation and Transfer of 2D Materials: Status, Challenges and Perspectives,”
AI for Science 1, 013002 (2025). 

[22] S. Cheng† , Z. Qiao† , Z. Wang† , et al.,
“Single Mode Lasing from CsPbBr₃ Microcrystals Fabricated by Solid State Space-Confined Growth,”
2025. Advanced Optical Materials

[21] M. Šebek, G. Wu, Z. Wang, et al.,
“Greatly Enhanced Radiative Recombination at High Exciton Density in Acid-Treated 2D Alloy,”
ACS Applied Materials & Interfaces, 2025.

[20] Z. Wang†* , X. Liang†*,
“Higher Degree Phase Accumulation in Atomic-Thin Modulator,”
Device, 2025.


2024

[19] J. Fu, M. Jiang, Z. Wang, Y. F. Chen, Y. Liu, Q. Y. S. Wu, A. J. Sim, J. Wang, M. Chen, Z. Wang, J. Deng, X. S. E. Tang, K. Huang, H. Liu, and J. Teng,
“Supercritical Metalens at h-Line for High-Resolution Direct Laser Writing,”
Opto-Electronic Science 3, 230035 (2024).

[18] Z. Wang, K. V. Sreekanth, M. Zhao, J. Nong, Y. Liu, and J. Teng,
“Two-Dimensional Materials for Tunable and Nonlinear Metaoptics,”
Advanced Photonics 6, 034001 (2024).

[17] M. Šebek†, Z. Wang†, N. G. West, D. C. J. Neo, X. Su, S. Wang, J. Pan, N. T. K. Thanh, M. Yang, and J. Teng,
“Van der Waals Enabled Formation and Integration of Ultrathin High-κ Dielectrics on 2D Semiconductors,”
npj 2D Materials and Applications, 2024.


2023

[16] A. Elbanna†, Z. Wang†, Y. Liu, et al.,
“Multi-Controllability of Ambipolar Photoconductivity in Transition Metal Dichalcogenides van der Waals Heterostructures,”
Advanced Materials Technologies 8, 2301079 (2023).

[15] Z. Wang†*, M. Šebek†, X. Liang, et al.,
“Greatly Enhanced Resonant Exciton-Trion Conversion in Electrically Modulated Atomically Thin WS₂ at Room Temperature,”
Advanced Materials 35, 2302248 (2023).

[14] A. S. Rana, M. Zubair, Y. Chen, et al., Z. Wang, et al.,
“Broadband Solar Absorption by Chromium Metasurface for Highly Efficient Solar Thermophotovoltaic Systems,”
Renewable and Sustainable Energy Reviews, 2023.


2021

[13] S. Cheng, Q. Chang, Z. Wang, et al.,
“Observation of Net Stimulated Emission in CsPbBr₃ Thin Films Prepared by Pulsed Laser Deposition,”
Advanced Optical Materials, 2021.


2020

[12] Z. Wang†, G. Yuan†, M. Yang, J. Chai, Q. Y. S. Wu, T. Wang, M. Šebek, D. Wang, L. Wang, S. Wang, D. Chi, G. Adamo, C. Soci, H. Sun, K. Huang, and J. Teng,
“Exciton-Enabled Meta-Optics in Two-Dimensional Transition Metal Dichalcogenides,”
Nano Letters 20, 7964–7972 (2020).


2019

[11] L. Xiao, Q. Du, Y. Huang, et al., Z. Wang, et al.,
“Rapid Synthesis of Sulfur Nanodots by One-Step Hydrothermal Reaction for Luminescence-Based Applications,”
ACS Applied Nano Materials, 2019.

[10] Z. Wang, Y. Wang, G. Adamo, et al.,
“Induced Optical Chirality and Circularly Polarized Emission from Achiral CdSe/ZnS Quantum Dots via Resonantly Coupling with Plasmonic Chiral Metasurfaces,”
Laser & Photonics Reviews, 2019.


2017

[9] Y. Wang, D. Yu, Z. Wang, X. Li, X. Chen, V. Nalla, H. Zeng, and H. Sun,
“Solution-Grown CsPbBr₃/Cs₄PbBr₆ Perovskite Nanocomposites: Toward Temperature-Insensitive Optical Gain,”
Small, 2017.

[8] Z. Wang, B. H. Teh, Y. Wang, et al.,
“Enhancing Circular Dichroism by Super Chiral Hot Spots from a Chiral Metasurface with Apexes,”
Applied Physics Letters 110, 221108 (2017).

[7] Y. Wang, D. Ta, K. S. Leck, et al., Z. Wang, et al.,
“Robust Whispering-Gallery-Mode Microbubble Lasers from Colloidal Quantum Dots,”
Nano Letters, 2017.


2016

[6] Y. Wang, X. Li, S. Sreejith, et al., Z. Wang, et al.,
“Photon Driven Transformation of Cesium Lead Halide Perovskites from Few-Monolayer Nanoplatelets to Bulk Phase,”
Advanced Materials, 2016.

[5] Z. Wang, Y. Wang, G. Adamo, et al.,
“A Novel Chiral Metasurface with Controllable Circular Dichroism Induced by Coupling Localized and Propagating Modes,”
Advanced Optical Materials, 2016.


2015

[4] Y. Wang, K. E. Fong, S. Yan, et al., Z. Wang, et al.,
“Unraveling the Ultralow Threshold Stimulated Emission from CdZnS/ZnS Quantum Dot and Enabling High-Q Microlasers,”
Laser & Photonics Reviews, 2015.


Conference Publications

2023

[C3] M. Zhao, Z. Wang, S. Wu, et al.,
“2D Tunable Optoelectronics,”
Conference Paper, 2023.

[C2] J. H. Teng, Z. Wang, S. Wu, et al.,
“Ultra-Thin Flat Lens for Sub-Diffraction Limit Focusing and Imaging,”
Conference Paper, 2023.

2015

[C1] S. Vezzoli, G. Adamo, Z. Wang, et al.,
“Ultrafast Optical Switching of Topological Insulator Plasmonic Metamaterial,”
Conference Paper, 2015.

 

Selected Patents

1. Atomically thin 2D platform for optical applications, PCT/SG2020/050356. Licensed.

2. Super Oscillation lens for high resolution lithography, IMR/P/12778/00/PCT. Licensed.

3. Nanopositioning system for optical imaging and laser writing, IMR/P/13693/00/PCT. Licensed.