Surface analysis is critical for the validation of microfluidic surface modifications for biology, chemistry, and physics applications. However, until now quantitative analytical methods have mostly been focused on open surfaces. Here, we present a new fluorescence imaging method to directly measure the surface coverage of functional groups inside assembled microchannels over a wide dynamic range. A key advance of our work is the elimination of self-quenching to obtain a linear signal even with a high density of functional groups. This method is applied to image the density and monitor the stability of vapor deposited silane layers in bonded silicon/glass micro- and nanochannels
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
Fabrication of nanofluidic devices was carried out and the devices were characterized. These devices...
Surface analysis is critical for the validation of microfluidic surface modifications for biology, c...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
The quantitative determination of surface functional groups is approached in a straightforward labor...
The preparation of aminated monolayers with a controlled density of functional groups on silica surf...
The preparation of aminated monolayers with a controlled density of functional groups on silica surf...
Nanofluidics is the science and technology involving a fluid flowing in or around structures with a ...
Tailored writing and specific positioning of molecules on nanostructures is a key step for creating ...
This paper describes an innovative and simple technique for analyzing defects in silane-based self-a...
This paper describes an innovative and simple technique for analyzing defects in silane-based self-a...
This paper describes an innovative and simple technique for analyzing defects in silane-based self-a...
Visualization techniques for studying heterogeneous microflow in the order of hundreds of microns an...
This work describes the development of a characterization method for biofunctionalized surfaces and ...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
Fabrication of nanofluidic devices was carried out and the devices were characterized. These devices...
Surface analysis is critical for the validation of microfluidic surface modifications for biology, c...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
The quantitative determination of surface functional groups is approached in a straightforward labor...
The preparation of aminated monolayers with a controlled density of functional groups on silica surf...
The preparation of aminated monolayers with a controlled density of functional groups on silica surf...
Nanofluidics is the science and technology involving a fluid flowing in or around structures with a ...
Tailored writing and specific positioning of molecules on nanostructures is a key step for creating ...
This paper describes an innovative and simple technique for analyzing defects in silane-based self-a...
This paper describes an innovative and simple technique for analyzing defects in silane-based self-a...
This paper describes an innovative and simple technique for analyzing defects in silane-based self-a...
Visualization techniques for studying heterogeneous microflow in the order of hundreds of microns an...
This work describes the development of a characterization method for biofunctionalized surfaces and ...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence micr...
Fabrication of nanofluidic devices was carried out and the devices were characterized. These devices...