arrow
Return

Reconfigurable Microlens Array Enables Tunable Imaging Based on Shape Memory Polymers

delete2024-02-09
delete6
PRE
AI
Z
Zhi‐Juan Sun
刘宇清 (Yuqing Liu) *
J
Jiayi Wan
刘雪晴 (Xueqing Liu)
Q
Qi‐Dai Chen
张永来 cover
张永来 (Yong‐Lai Zhang) *
DOI:10.1021/acsami.4c01030delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Microlens arrays (MLAs) with a tunable imaging ability are core components of advanced micro-optical systems. Nevertheless, tunable MLAs generally suffer from high power consumption, an undeformable rigid body, large and complex systems, or limited focal length tunability. The combination of reconfigurable smart materials with MLAs may lead to distinct advantages including programmable deformation, remote manipulation, and multimodal tunability. However, unlike photopolymers that permit flexible structuring, the fabrication of tunable MLAs and compound eyes (CEs) based on transparent smart materials is still rare. In this work, we report reconfigurable MLAs that enable tunable imaging based on shape memory polymers (SMPs). The smart MLAs with closely packed 200 x 200 microlenses (40.0 mu m in size) are fabricated via a combined technology that involves wet etching-assisted femtosecond laser direct writing of MLA templates on quartz, soft lithography for MLA duplication using SMPs, and the mechanical heat setting for programmable reconfiguration. By stretching or squeezing the shape memory MLAs at the transition temperature (80 degrees C), the size, profiles, and spatial distributions of the microlenses can be programmed. When the MLA is stretched from 0 to 120% (area ratio), the focal length is increased from 116 to 283 mu m. As a proof of concept, reconfigurable MLAs and a 3D CE with a tunable field of view (FOV, 160-0(degrees)) have been demonstrated in which the thermally triggered shape memory deformation has been employed for tunable imaging. The reconfigurable MLAs and CEs with a tunable focal length and adjustable FOV may hold great promise for developing smart micro-optical systems.
Keywords:
microlens array
femtosecond fabrication
tunableimaging
compound eye
shape memory polymer

Journal

ACS Applied Materials and Interfaces cover
ACS Applied Materials and Interfaces
IF:
8.2
Papers:
6.1W
Citations:
38.7W

Organization

N
northeast normal university - china
Scholars:
1.2W
Papers: 9.2K
Citations: 23
J
Jilin University
Scholars:
8.7W
Papers: 5.5W
Citations: 8.9K