Overcoming delamination in two-photon lithography for improving fabrication of 3D microstructures

被引:3
作者
Ha, Cheol Woo [1 ]
机构
[1] Korea Inst Ind Technol, Adv Joining & Addit Mfg R&D Dept, 113-58 Seohaean Ro, Shihung 15014, South Korea
基金
新加坡国家研究基金会;
关键词
two-photon lithography; 3D microstructure; swelling; delamination; fabrication yield improvement;
D O I
10.1186/s40486-023-00173-y
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Two-photon lithography has emerged as a highly effective method for fabricating intricate three-dimensional (3D) microstructures. It enables the rapid fabrication of 3D microstructures, unlike conventional two-dimensional nanopatterning. Researchers have extensively investigated two-photon polymerization (TPP) for the fabrication of diverse 3D micro/nanodevices with high resolution. TPP can be applied in cell cultures, metamaterials, optical materials, electrical devices, and fluidic devices, to name a few. In this study, we investigate the applications and innovative research pertaining to TPP, which is an effective fabrication technique with significant advancement in various fields. In particular, we attempt to determine the reasons that cause the detachment or delamination of 3D microstructures during the development process and propose some solutions. A step-by-step fabrication process for a glass substrate, from photoresist deposition to laser scanning and the dissolution of the uncured photoresist, is presented. Defects such as pattern delamination are discussed, with emphasis on the cell scaffold structure and microlens array. Understanding and addressing these defects are vital to the success of 3D microstructure fabrication via TPP.
引用
收藏
页数:9
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共 27 条
[11]   3D Printed Microtransporters: Compound Micromachines for Spatiotemporally Controlled Delivery of Therapeutic Agents [J].
Huang, Tian-Yun ;
Sakar, Mahmut Selman ;
Mao, Angelo ;
Petruska, Andrew J. ;
Qiu, Famin ;
Chen, Xue-Bo ;
Kennedy, Stephen ;
Mooney, David ;
Nelson, Bradley J. .
ADVANCED MATERIALS, 2015, 27 (42) :6644-+
[12]   High-throughput three-dimensional lithographic microfabrication [J].
Kim, Daekeun ;
So, Peter T. C. .
OPTICS LETTERS, 2010, 35 (10) :1602-1604
[13]   Fabrication and Characterization of Magnetic Microrobots for Three-Dimensional Cell Culture and Targeted Transportation [J].
Kim, Sangwon ;
Qiu, Famin ;
Kim, Samhwan ;
Ghanbari, Ali ;
Moon, Cheil ;
Zhang, Li ;
Nelson, Bradley J. ;
Choi, Hongsoo .
ADVANCED MATERIALS, 2013, 25 (41) :5863-5868
[14]   Advances in 3D nano/microfabrication using two-photon initiated polymerization [J].
Lee, Kwang-Sup ;
Kim, Ran Hee ;
Yang, Dong-Yol ;
Park, Sang Hu .
PROGRESS IN POLYMER SCIENCE, 2008, 33 (06) :631-681
[15]   Evaluation of anticancer drug in a polymer 3D cell chip [J].
Lee, Kwon-Jai ;
An, Jeung Hee ;
Shin, Jae-Soo ;
Ha, Cheol Woo ;
Son, Yong ;
Seok, Jaeseo ;
Lee, Kwang-Sup .
OPTICAL MATERIALS EXPRESS, 2017, 7 (08) :2752-2759
[16]   Dynamic laser prototyping for biomimetic nanofabrication [J].
Liu, Dong-Xu ;
Sun, Yun-Lu ;
Dong, Wen-Fei ;
Yang, Rui-Zhu ;
Chen, Qi-Dai ;
Sun, Hong-Bo .
LASER & PHOTONICS REVIEWS, 2014, 8 (06) :882-888
[17]   Fast fabrication of silver helical metamaterial with single-exposure femtosecond laser photoreduction [J].
Liu, Lipu ;
Yang, Dong ;
Wan, Weiping ;
Yang, Hong ;
Gong, Qihuang ;
Li, Yan .
NANOPHOTONICS, 2019, 8 (06) :1087-1093
[18]   Structural color three-dimensional printing by shrinking photonic crystals [J].
Liu, Yejing ;
Wang, Hao ;
Ho, Jinfa ;
Ng, Ryan C. ;
Ng, Ray J. H. ;
Hall-Chen, Valerian H. ;
Koay, Eleen H. H. ;
Dong, Zhaogang ;
Liu, Hailong ;
Qiu, Cheng-Wei ;
Greer, Julia R. ;
Yang, Joel K. W. .
NATURE COMMUNICATIONS, 2019, 10 (1)
[19]   Multi-beam two-photon polymerization for fast large area 3D periodic structure fabrication for bioapplications [J].
Maibohm, Christian ;
Silvestre, Oscar F. ;
Borme, Jerome ;
Sinou, Maina ;
Heggarty, Kevin ;
Nieder, Jana B. .
SCIENTIFIC REPORTS, 2020, 10 (01)
[20]   Fabricating three-dimensional polymeric photonic structures by multi-beam interference lithography [J].
Moon, JH ;
Ford, J ;
Yang, S .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2006, 17 (02) :83-93