We demonstrate the possibility of using a simple functionalization procedure, based on an initial vapour-phase silanization, to control the size and functionality of solid state nanopores. The presented results show that, by varying the silanization time, it is possible to modify the efficiency of probe molecule attachment, thus shrinking the...
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2012 (v1)PublicationUploaded on: March 27, 2023
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2011 (v1)Publication
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Uploaded on: April 14, 2023 -
2014 (v1)Publication
There is currently a growing interest in control of stretching of DNA inside nanoconfined regions due to the possibility to analyze and manipulate single biomolecules for applications such as DNA mapping and barcoding, which are based on stretching the DNA in a linear fashion. In the present work, we couple Finite Element Methods and Monte...
Uploaded on: April 14, 2023 -
2012 (v1)Publication
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Uploaded on: April 14, 2023 -
2012 (v1)Publication
Peculiar transport phenomena appear at nanoscale, since surface effects strongly affect the behaviour of fluids. Electrostatic and steric interactions, capillary forces and entropic effects play a key role in the behaviour of fluids and biomolecules. Since these effects strongly depend on the size of the nanofluidic system, a...
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2015 (v1)Publication
We present the first detailed experimental observation and analysis of nanoparticle electrophoresis through a nanochannel obtained with synchronous high-bandwidth electrical and camera recordings. Optically determined particle diffusion coefficients agree with values extracted from fitting electrical transport measurements to distributions from...
Uploaded on: April 14, 2023 -
2012 (v1)Publication
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Uploaded on: April 14, 2023