Javascript must be enabled to continue!
Fabrication of Transparent and Flexible Digital Microfluidics Devices
View through CrossRef
This study proposed a fabrication method for thin, film-based, transparent, and flexible digital microfluidic devices. A series of characterizations were also conducted with the fabricated digital microfluidic devices. For the device fabrication, the electrodes were patterned by laser ablation of 220 nm-thick indium tin oxide (ITO) layer on a 175 μm-thick polyethylene terephthalate (PET) substrate. The electrodes were insulated with a layer of 12 μm-thick polyethylene (PE) film as the dielectric layer, and finally, a surface treatment was conducted on PE film in order to enhance the hydrophobicity. The whole digital microfluidic device has a total thickness of less than 200 μm and is nearly transparent in the visible range. The droplet manipulation with the proposed digital microfluidic device was also achieved. In addition, a series of characterization studies were conducted as follows: the contact angles under different driving voltages, the leakage current density across the patterned electrodes, and the minimum driving voltage with different control algorithms and droplet volume were measured and discussed. The UV–VIS spectrum of the proposed digital microfluidic devices was also provided in order to verify the transparency of the fabricated device. Compared with conventional methods for the fabrication of digital microfluidic devices, which usually have opaque metal/carbon electrodes, the proposed transparent and flexible digital microfluidics could have significant advantages for the observation of the droplets on the digital microfluidic device, especially for colorimetric analysis using the digital microfluidic approach.
Title: Fabrication of Transparent and Flexible Digital Microfluidics Devices
Description:
This study proposed a fabrication method for thin, film-based, transparent, and flexible digital microfluidic devices.
A series of characterizations were also conducted with the fabricated digital microfluidic devices.
For the device fabrication, the electrodes were patterned by laser ablation of 220 nm-thick indium tin oxide (ITO) layer on a 175 μm-thick polyethylene terephthalate (PET) substrate.
The electrodes were insulated with a layer of 12 μm-thick polyethylene (PE) film as the dielectric layer, and finally, a surface treatment was conducted on PE film in order to enhance the hydrophobicity.
The whole digital microfluidic device has a total thickness of less than 200 μm and is nearly transparent in the visible range.
The droplet manipulation with the proposed digital microfluidic device was also achieved.
In addition, a series of characterization studies were conducted as follows: the contact angles under different driving voltages, the leakage current density across the patterned electrodes, and the minimum driving voltage with different control algorithms and droplet volume were measured and discussed.
The UV–VIS spectrum of the proposed digital microfluidic devices was also provided in order to verify the transparency of the fabricated device.
Compared with conventional methods for the fabrication of digital microfluidic devices, which usually have opaque metal/carbon electrodes, the proposed transparent and flexible digital microfluidics could have significant advantages for the observation of the droplets on the digital microfluidic device, especially for colorimetric analysis using the digital microfluidic approach.
Related Results
Low‐cost microfluidics: materials and methods
Low‐cost microfluidics: materials and methods
Microfluidics has been widely used in the biological, chemical and recently in the energy field. In the past decade, microfluidics has experienced tremendous growth in academia; re...
The influence of micro influencers and digital marketing on product purchasing decisions at tiktok shop in bengkulu city
The influence of micro influencers and digital marketing on product purchasing decisions at tiktok shop in bengkulu city
THE INFLUENCE OF MICRO-INFLUENCERS AND DIGITAL MARKETING ON PURCHASE DECISIONS OF TIKTOK SHOP CUSTOMERS IN BENGKULU CITY
Andhes Tiani Putri, Meylaty F
12Faculty Of Economic
E...
P-061 In situ microfluidics of fluidic walls: a novel deviceless and cost-effective approach for sperm selection in the same ICSI-dish
P-061 In situ microfluidics of fluidic walls: a novel deviceless and cost-effective approach for sperm selection in the same ICSI-dish
Abstract
Study question
Is our novel deviceless method based on in-situ microfluidics a valuable strategy to select suitable spe...
P-103 Sperm selection for ICSI by rheotaxis and thermotaxis in In-Situ handmade microfluidics of fluidic walls: preliminary results of a Randomized Controlled Trial
P-103 Sperm selection for ICSI by rheotaxis and thermotaxis in In-Situ handmade microfluidics of fluidic walls: preliminary results of a Randomized Controlled Trial
Abstract
Study question
Does sperm selection by rheotaxis and thermotaxis in In-Situ handmade microfluidics of fluidic walls opt...
P-227 ICSI outcomes after using in-situ microfluidics of fluidic walls versus DGC: a prospective non-inferiority comparative pilot study in sibling oocytes
P-227 ICSI outcomes after using in-situ microfluidics of fluidic walls versus DGC: a prospective non-inferiority comparative pilot study in sibling oocytes
Abstract
Study question
Does the novel strategy in-situ microfluidics (isM) yield comparable ICSI outcomes to the control sperm ...
The Predicting Power Of Digital Reading Attitudes Of Primary School Teacher Candidates’ Digital Reading Attitudes On Their Digital Literacy
The Predicting Power Of Digital Reading Attitudes Of Primary School Teacher Candidates’ Digital Reading Attitudes On Their Digital Literacy
In this study, it was is aimed to examine the predictive power of primary school teacher candidates’ digital reading attitudes on their digital literacy. The relational survey mode...
Eksistensi Digital Wedding Di Era Disrupsi Dalam Maqashid Syariah
Eksistensi Digital Wedding Di Era Disrupsi Dalam Maqashid Syariah
Abstract
The era of disruption has presented a new phenomenon in wedding procedures, namely digital weddings. The emergence of digital marriage raises questions about its validity...
Introducing natural thermoplastic shellac to microfluidics: A green fabrication method for point-of-care devices
Introducing natural thermoplastic shellac to microfluidics: A green fabrication method for point-of-care devices
We present a sustainable fabrication method for cheap point-of-care microfluidic systems, employing hot embossing of natural shellac as a key feature of an energy-efficient fabrica...

