Microfluidic pneumatic cages

The precise localization and controlled chemical treatment of structures on a surface are significant challenges for common laboratory technologies. Herein, we introduce a microfluidic-based technology, employing a double-layer microfluidic device, which can trap and localize in situ and ex situ syn...

Full description

Bibliographic Details
Authors: Abrishamkar, Afshin|||0000-0001-5957-8067, Paradinas, Markos|||0000-0003-1006-9506, Bailo, Elena, Rodríguez Trujillo, Romen, Pfattner, Raphael|||0000-0002-7232-1845, Rossi, René M., Ocal García, Carmen|||0000-0001-8790-8844, deMello, Andrew J., Amabilino, David B.|||0000-0003-1674-8462, Puigmarti-Luis, Josep|||0000-0002-7510-9815
Format: article
Publication Date:2016
Country:España
Institution:Universitat Autònoma de Barcelona
Repository:Dipòsit Digital de Documents de la UAB
Language:English
OAI Identifier:oai:ddd.uab.cat:204839
Online Access:https://ddd.uab.cat/record/204839
https://dx.doi.org/urn:doi:10.3791/54193
Access Level:Open access
Keyword:Controlled chemical treatment
Double-layer chips
Microfluidics
Micro-valves
Pneumatic cages
Self-assembly
Description
Summary:The precise localization and controlled chemical treatment of structures on a surface are significant challenges for common laboratory technologies. Herein, we introduce a microfluidic-based technology, employing a double-layer microfluidic device, which can trap and localize in situ and ex situ synthesized structures on microfluidic channel surfaces. Crucially, we show how such a device can be used to conduct controlled chemical reactions onto on-chip trapped structures and we demonstrate how the synthetic pathway of a crystalline molecular material and its positioning inside a microfluidic channel can be precisely modified with this technology. This approach provides new opportunities for the controlled assembly of structures on surface and for their subsequent treatment.