In this letter, the authors demonstrate Drop-on-Demand printing of variable focus, polarization-independent, liquid crystal (LC) microlenses. By carefully selecting the surface treatment applied to a glass substrate, the authors are able to deposit droplets with a well-defined curvature and contact angle, which result in micron-sized lenses with focal lengths on the order of 300–900 µm. Observations with an optical polarizing microscope confirm the homeotopic alignment of the LC director in the droplets, which is in accordance with the polarization independent focal length. Results show that microlenses of different focal lengths can be fabricated by depositing successive droplets onto the same location on the substrate, which can then be u...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
This paper investigates the drop-on-demand inkjet printing of a nematic liquid crystal (LC) onto a v...
We review recent advances in optical microlens array fabrication using piezoelectric microchannel mo...
In this letter, the authors demonstrate Drop-on-Demand printing of variable focus, polarization-inde...
In this letter, we demonstrate Drop-on-Demand printing of variable focus, polarisationindependent, l...
In this letter, we demonstrate Drop-on-Demand printing of variable focus, polarisationindependent, l...
Drop-on-demand (DoD) inkjet printing is an efficient process for controlling the exact position, siz...
In this communication, the fabrication of electrically tunable bifocal liquid crystal (LC) microlens...
This thesis investigates the drop-on-demand inkjet printing of liquid crystal (LC) inks, from drop f...
This thesis focuses on the development and investigation of drop-on-demand (DoD) printing of liquid ...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
We report a laser-based approach for the fast fabrication of high-optical-quality polymeric microlen...
Abstract. Microlenses made of hybrid organic-inorganic materials have been fabricated on glass subst...
Precise positioning of microlenses with well-defined optical characteristics is key in the further d...
This thesis describes research to produce variable focal length microlenses by immersing refractive ...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
This paper investigates the drop-on-demand inkjet printing of a nematic liquid crystal (LC) onto a v...
We review recent advances in optical microlens array fabrication using piezoelectric microchannel mo...
In this letter, the authors demonstrate Drop-on-Demand printing of variable focus, polarization-inde...
In this letter, we demonstrate Drop-on-Demand printing of variable focus, polarisationindependent, l...
In this letter, we demonstrate Drop-on-Demand printing of variable focus, polarisationindependent, l...
Drop-on-demand (DoD) inkjet printing is an efficient process for controlling the exact position, siz...
In this communication, the fabrication of electrically tunable bifocal liquid crystal (LC) microlens...
This thesis investigates the drop-on-demand inkjet printing of liquid crystal (LC) inks, from drop f...
This thesis focuses on the development and investigation of drop-on-demand (DoD) printing of liquid ...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
We report a laser-based approach for the fast fabrication of high-optical-quality polymeric microlen...
Abstract. Microlenses made of hybrid organic-inorganic materials have been fabricated on glass subst...
Precise positioning of microlenses with well-defined optical characteristics is key in the further d...
This thesis describes research to produce variable focal length microlenses by immersing refractive ...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
This paper investigates the drop-on-demand inkjet printing of a nematic liquid crystal (LC) onto a v...
We review recent advances in optical microlens array fabrication using piezoelectric microchannel mo...