W
Wenhao Huang
Researcher at University of Science and Technology of China
Publications - 79
Citations - 1132
Wenhao Huang is an academic researcher from University of Science and Technology of China. The author has contributed to research in topics: Laser & Femtosecond. The author has an hindex of 19, co-authored 79 publications receiving 963 citations.
Papers
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Journal ArticleDOI
Parallel direct laser writing of micro-optical and photonic structures using spatial light modulator
Liang Yang,Ayman El-Tamer,Ulf Hinze,Jiawen Li,Yanlei Hu,Wenhao Huang,Jiaru Chu,Boris N. Chichkov +7 more
TL;DR: In this paper, a multiple focal spot pattern (PP) was designed for parallel 2PP processing and the quantity and position of the multiple foci can be controlled by predesigned computer generated holograms (CGHs).
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Laser printing hierarchical structures with the aid of controlled capillary-driven self-assembly
Yanlei Hu,Zhaoxin Lao,Benjamin P. Cumming,Dong Wu,Jiawen Li,Haiyi Liang,Jiaru Chu,Wenhao Huang,Min Gu +8 more
TL;DR: The functionality of the hierarchical structures are demonstrated as a nontrivial tool for the selective trapping and releasing of microparticles, opening up a potential for the development of in situ transportation systems for microobjects.
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Femtosecond laser color marking stainless steel surface with different wavelengths
TL;DR: In this article, the femtosecond laser color marking stainless steel surfaces with different incident wavelengths were investigated theoretically and experimentally, and it was shown that the spectral regions of the colors firstly increase and then reduce with increasing spatial periods of the ripples induced by laser irradiation.
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High-efficiency fabrication of aspheric microlens arrays by holographic femtosecond laser-induced photopolymerization
TL;DR: In this paper, the inherent constraints of the spatial light modulator are taken into consideration for achieving improved intensity uniformity and enhanced diffraction efficiency. And the parallel fabrication of aspheric microlens arrays (AMLAs) by taking advantage of holographic femtosecond laser direct-writing is reported.
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Large-Area One-Step Assembly of Three-Dimensional Porous Metal Micro/Nanocages by Ethanol-Assisted Femtosecond Laser Irradiation for Enhanced Antireflection and Hydrophobicity
TL;DR: 3D cagelike micro/nanostructures exhibit not only improved antireflection from 80% to 7% but also enhanced hydrophobicity from 98.5° to 142° without surface modification.