Molecular confinement is known to lead to acceleration of molecular dynamics along with surface interaction. Nature employs confinement in molecularly crowded, heterogeneous and, specialized femtoliter (fL) compartments inside living cells for spontaneously achieving higher reaction efficiency and spatial-programming of composite, multi-step biochemical processes. We here show the facile production of aqueous fL droplets for studying molecular confinement on a biochip. We prepare fL aqueous droplets in oil drops on solid substrates by a “field-free”- no external electric fields and electrolytes - piezoelectric inkjet printing in which a novel actuating waveform is employed by picoliter sized nozzles (Fig 1.a). The droplets form an almost-re...
Assembly from ultrasmall solution droplets follows a different dynamic from that of larger scales. U...
Inkjet printing is here employed for the first time as a method to produce femtoliter-scale oil drop...
Photoactivatable dyes enable single-molecule imaging and tracking in biology. Despite progress in th...
Molecular confinement is known to lead to acceleration of molecular dynamics along with surface inte...
Natural evolution has chosen the localization of biomolecular processes into crowded sub-cellular fe...
A simple, rapid, and highly controlled platform to prepare life-inspired subcellular scale compartme...
In this thesis work, solution dispensing techniques, such as inkjet printing and dip pen nanolithogr...
Printing has fueled the development of a new class of artificial biosystems for the qualitative and ...
The fabrication of size-scalable liquid compartments is a topic of fundamental importance in synthet...
This work presents the first reported imbibition mechanism of femtoliter (fL)-scale droplets produce...
Printing technologies represent a powerful tool for the direct micro- and nano- fabrication of biomo...
Assembly from ultrasmall solution droplets follows a different dynamic from that of larger scales. U...
Inkjet printing is here employed for the first time as a method to produce femtoliter-scale oil drop...
Photoactivatable dyes enable single-molecule imaging and tracking in biology. Despite progress in th...
Molecular confinement is known to lead to acceleration of molecular dynamics along with surface inte...
Natural evolution has chosen the localization of biomolecular processes into crowded sub-cellular fe...
A simple, rapid, and highly controlled platform to prepare life-inspired subcellular scale compartme...
In this thesis work, solution dispensing techniques, such as inkjet printing and dip pen nanolithogr...
Printing has fueled the development of a new class of artificial biosystems for the qualitative and ...
The fabrication of size-scalable liquid compartments is a topic of fundamental importance in synthet...
This work presents the first reported imbibition mechanism of femtoliter (fL)-scale droplets produce...
Printing technologies represent a powerful tool for the direct micro- and nano- fabrication of biomo...
Assembly from ultrasmall solution droplets follows a different dynamic from that of larger scales. U...
Inkjet printing is here employed for the first time as a method to produce femtoliter-scale oil drop...
Photoactivatable dyes enable single-molecule imaging and tracking in biology. Despite progress in th...