International audienceSolid-state nanopores have a huge potential in upcoming societal challenging applications in biotechnologies, environment, health and energy. Nowadays, these sensors are often used within bulky fluidic devices that can cause cross-contaminations and risky nanopore chips manipulations, leading to a short experimental lifetime. We describe the easy, fast and cheap innovative 3D-printer-helped protocol to manufacture a microfluidic device permitting the reversible integration of a silicon based chip containing a single nanopore. We show the relevance of the shape of the obtained channels thanks to finite elements simulations. We use this device to thoroughly investigate the ionic transport through the solid-state nanopore...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
Single molecule sensing using solid-state nanopores has sparked tremendous interest within the last ...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...
International audienceSolid-state nanopores have a huge potential in upcoming societal challenging a...
Solid-state nanopores have a huge potential in upcoming societal challenging applications in biotech...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
International audienceElectrical detection based on single nanopores is an efficient tool to detect ...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
International audienceSolid-state nanopores can be used as electrical biosensors at the single molec...
Development of sophisticated tools capable of manipulating molecules at their own length scale enabl...
The miniaturization afforded by the integration of microfluidic technologies within lab-on-a-chip de...
Electrical detection based on single nanopores is an efficient tool to detect biomolecules, particle...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
The transport of nutrients, xenobiotics, and signaling molecules across biological membranes is esse...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
Single molecule sensing using solid-state nanopores has sparked tremendous interest within the last ...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...
International audienceSolid-state nanopores have a huge potential in upcoming societal challenging a...
Solid-state nanopores have a huge potential in upcoming societal challenging applications in biotech...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
International audienceElectrical detection based on single nanopores is an efficient tool to detect ...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
International audienceSolid-state nanopores can be used as electrical biosensors at the single molec...
Development of sophisticated tools capable of manipulating molecules at their own length scale enabl...
The miniaturization afforded by the integration of microfluidic technologies within lab-on-a-chip de...
Electrical detection based on single nanopores is an efficient tool to detect biomolecules, particle...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
The transport of nutrients, xenobiotics, and signaling molecules across biological membranes is esse...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
Single molecule sensing using solid-state nanopores has sparked tremendous interest within the last ...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...