Recent achievements on photovoltaic optoelectronic tweezers based on lithium niobate
This review presents an up-dated summary of the fundamentals and applications of
optoelectronic photovoltaic tweezers for trap** and manipulation of nano-objects on the …
optoelectronic photovoltaic tweezers for trap** and manipulation of nano-objects on the …
Optofluidic Platform for the Manipulation of Water Droplets on Engineered LiNbO3 Surfaces
The actuation and control of liquid droplets on a surface have important implications in many
industrial applications and microfluidics. In recent years, various strategies have been used …
industrial applications and microfluidics. In recent years, various strategies have been used …
Optoelectronic manipulation, trap**, splitting, and merging of water droplets and aqueous biodroplets based on the bulk photovoltaic effect
Optical and optoelectronic techniques for micro-and nano-object manipulation are becoming
essential tools in nano-and biotechnology. The use of photovoltaic optoelectronic tweezers …
essential tools in nano-and biotechnology. The use of photovoltaic optoelectronic tweezers …
LiNbO3: A photovoltaic substrate for massive parallel manipulation and patterning of nano-objects
M Carrascosa, A García-Cabañes, M Jubera… - Applied Physics …, 2015 - pubs.aip.org
The application of evanescent photovoltaic (PV) fields, generated by visible illumination of
Fe: LiNbO 3 substrates, for parallel massive trap** and manipulation of micro-and nano …
Fe: LiNbO 3 substrates, for parallel massive trap** and manipulation of micro-and nano …
Trifurcated Splitting of Water Droplets on Engineered Lithium Niobate Surfaces
Controlled splitting of liquid droplets is a key function in many microfluidic applications. In
recent years, various methodologies have been used to accomplish this task. Here, we …
recent years, various methodologies have been used to accomplish this task. Here, we …
Light-induced dynamics of liquid-crystalline droplets on the surface of iron-doped lithium niobate crystals
A Sterle, L Cmok, N Sebastian, A Mertelj… - Optical Materials …, 2022 - opg.optica.org
We investigated the effect of a photovoltaic field generated on the surface of iron-doped
lithium niobate crystals on sessile droplets of a ferroelectric nematic liquid crystalline and a …
lithium niobate crystals on sessile droplets of a ferroelectric nematic liquid crystalline and a …
Running streams of a ferroelectric nematic liquid crystal on a lithium niobate surface
Sessile droplets of a ferroelectric nematic liquid crystalline material were exposed to surface
electric fields produced by pyroelectric and photogalvanic (photovoltaic) effects in X-cut iron …
electric fields produced by pyroelectric and photogalvanic (photovoltaic) effects in X-cut iron …
Optofluidic droplet router
M Esseling, A Zaltron, W Horn… - Laser & Photonics …, 2015 - Wiley Online Library
This contribution presents an optofluidic droplet router which is able to route and steer
microdroplets using optically induced forces created solely by the bulk photovoltaic effect on …
microdroplets using optically induced forces created solely by the bulk photovoltaic effect on …
Photovoltaic cycling to-and-fro actuation of a water-microdroplet for automatic repeatable solute acquisition on oil-infused hydrophobic LN: Fe surface
X Zhang, ER Mugisha, Y Mi, X Liu, M Wang… - ACS …, 2021 - ACS Publications
Acquiring solute from sources without external aids is a challenging manipulation of water
microdroplets for develo** LN-based biological lab-on-chips. Herein, a cycling to-and-fro …
microdroplets for develo** LN-based biological lab-on-chips. Herein, a cycling to-and-fro …
Photovoltaic Manipulation of Water Microdroplets on a Hydrophobic Substrate
B Fan, F Li, L Chen, L Shi, W Yan, Y Zhang, S Li… - Physical Review …, 2017 - APS
Aqueous microdroplets are challenging objects for photoassisted manipulation techniques
based on lithium niobate (LN) substrates. In this paper, we demonstrate a successful …
based on lithium niobate (LN) substrates. In this paper, we demonstrate a successful …