TY - JOUR
T1 - 微透镜阵列的制备与应用研究进展
AU - Li, Jianjun
AU - Chu, Chunyan
AU - Lu, Weitong
AU - Zhang, Pingping
AU - Yang, Gaoling
AU - Zhong, Haizheng
AU - Zhao, Yuejin
N1 - Publisher Copyright:
© 2021, Chinese Lasers Press. All right reserved.
PY - 2021/11/10
Y1 - 2021/11/10
N2 - Microlens array is a multi-functional micro-optical element that can modulate incident light to realize beam expansion, beam shaping, light splitting, and optical focusing, and further to achieve large viewing angle, low aberration, small distortion, high time resolution, and infinite depth of field. Microlens array has important application potential in miniaturization, intelligence and integration of optoelectronic devices and optical systems. This review article first describes the design principle and development history of microlens arrays. Then the recent progress on the fabrication of microlens arrays including inkjet printing, laser direct writing, screen printing, photolithography, photopolymerization, thermal reflow, and chemical vapor deposition is reviewed. In addition, the applications of microlens arrays in the fields of imaging sensors, lighting, display, and solar cells are summarized. Finally, the future development directions are prospected, and the development trend and future challenges of curved microlens, superimposed compound eye system and the combination of microlens with new optoelectronic materials are discussed.
AB - Microlens array is a multi-functional micro-optical element that can modulate incident light to realize beam expansion, beam shaping, light splitting, and optical focusing, and further to achieve large viewing angle, low aberration, small distortion, high time resolution, and infinite depth of field. Microlens array has important application potential in miniaturization, intelligence and integration of optoelectronic devices and optical systems. This review article first describes the design principle and development history of microlens arrays. Then the recent progress on the fabrication of microlens arrays including inkjet printing, laser direct writing, screen printing, photolithography, photopolymerization, thermal reflow, and chemical vapor deposition is reviewed. In addition, the applications of microlens arrays in the fields of imaging sensors, lighting, display, and solar cells are summarized. Finally, the future development directions are prospected, and the development trend and future challenges of curved microlens, superimposed compound eye system and the combination of microlens with new optoelectronic materials are discussed.
KW - Device integration
KW - Display
KW - Fabrication technology
KW - Microlens array
KW - Optical fabrication
KW - Optical system
UR - http://www.scopus.com/inward/record.url?scp=85125193655&partnerID=8YFLogxK
U2 - 10.3788/AOS202141.2100001
DO - 10.3788/AOS202141.2100001
M3 - 文献综述
AN - SCOPUS:85125193655
SN - 0253-2239
VL - 41
JO - Guangxue Xuebao/Acta Optica Sinica
JF - Guangxue Xuebao/Acta Optica Sinica
IS - 21
M1 - 2100001
ER -