two photon polymerization
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Author(s):  
Pranjal Nautiyal ◽  
Victoria Wiedorn ◽  
Tony Thomas ◽  
Nicole Bacca ◽  
Alice White ◽  
...  

Author(s):  
Hongcheng Gu ◽  
Xiaojiang Liu ◽  
Zhongde Mu ◽  
Qiong Wang ◽  
Haibo Ding ◽  
...  

2021 ◽  
pp. 1-10
Author(s):  
Lynne A. Goodwin ◽  
Derek W. Schmidt ◽  
Lindsey Kuettner ◽  
Brian M. Patterson ◽  
Ethan Walker ◽  
...  

2021 ◽  
pp. 462763
Author(s):  
Fréderick Matheuse ◽  
Koen Vanmol ◽  
Jürgen Van Erps ◽  
Wim De Malsche ◽  
Heidi Ottevaere ◽  
...  

Biomimetics ◽  
2021 ◽  
Vol 6 (4) ◽  
pp. 66
Author(s):  
Nikita Nekrasov ◽  
Natalya Yakunina ◽  
Vladimir Nevolin ◽  
Ivan Bobrinetskiy ◽  
Pavel Vasilevsky ◽  
...  

Multifunctional biomaterials can pave a way to novel types of micro- and nanoelectromechanical systems providing benefits in mimicking of biological functions in implantable, wearable structures. The production of biocomposites that hold both superior electrical and mechanical properties is still a challenging task. In this study, we aim to fabricate 3D printed hydrogel from a biocomposite of bovine serum albumin with graphene oxide (BSA@GO) using femtosecond laser processing. We have developed the method for functional BSA@GO composite nanostructuring based on both two-photon polymerization of nanofilaments and direct laser writing. The atomic-force microscopy was used to probe local electrical and mechanical properties of hydrogel BSA@GO nanowires. The improved local mechanical properties demonstrate synergistic effect in interaction of femtosecond laser pulses and novel composite structure.


2021 ◽  
pp. 2100158
Author(s):  
Marc del Pozo ◽  
Colm Delaney ◽  
Marina Pilz da Cunha ◽  
Michael G. Debije ◽  
Larisa Florea ◽  
...  

2021 ◽  
pp. 2101526
Author(s):  
Tiziana Ritacco ◽  
Dante M. Aceti ◽  
Gianfranco De Domenico ◽  
Michele Giocondo ◽  
Alfredo Mazzulla ◽  
...  

2021 ◽  
Author(s):  
Mathieu Hautefeuille ◽  
Juan Hernández-Cordero

Author(s):  
Felix Glöckler ◽  
Florian Hausladen ◽  
Igor Alekseenko ◽  
Alexander Gröger ◽  
Giancarlo Pedrini ◽  
...  

Abstract This article discusses the fabrication and performance of a multi-channel fibre switch, consisting of 19 single-mode fibres, with enhanced coupling efficiency due to micro-optics, directly printed via two-photon-polymerization on the end-face of each fibre. The use of high-resolution two-photon-polymerization not only allows the enhancement of the coupling efficiency with respect to the coupling device in use but likewise offers great freedom in the arrangement of the used fibres. This letter gives a thorough explanation of the fabrication method as well as the optical simulations for the lenses on the fibre assembly.


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