We present a novel approach for characterizing surfaces utilizing super-resolution fluorescence microscopy with subdiffraction limit spatial resolution. Thermoplastic surfaces were activated by UV/O3 or O2 plasma treatment under various conditions to generate pendant surface-confined carboxylic acids (-COOH). These surface functional groups were then labeled with a photoswitchable dye and interrogated using single-molecule, localization-based, super-resolution fluorescence microscopy to elucidate the surface heterogeneity of these functional groups across the activated surface. Data indicated nonuniform distributions of these functional groups for both COC and PMMA thermoplastics with the degree of heterogeneity being dose dependent. In add...
A profound understanding of cell-material communications is imperative to progress in the field of t...
A profound understanding of cell-material communications is imperative to progress in the field of t...
A profound understanding of cell-material communications is imperative to progress in the field of t...
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...
Because of the unique properties that arise when the column size is comparable to either the length ...
The need to activate thermoplastic surfaces using robust and efficient methods has been driven by th...
Surface analysis is critical for the validation of microfluidic surface modifications for biology, c...
The need to activate thermoplastic surfaces using robust and efficient methods has been driven by th...
The need to activate thermoplastic surfaces using robust and efficient methods has been driven by th...
We report the surface modification of thermoplastic nanochannels and the evaluation of the surface c...
Thermoplastics have become attractive alternatives to glass/quartz for microfluidics, but the realiz...
Mixed-scale nano-and microfluidic networks were fabricated in thermoplastics using simple and robust...
Nanofludic devices provide a great platform for single molecular analysis. The unique phenomena in n...
263 pagesPolymer systems and nanocomposites thereof encompass an enormous array of materials with ap...
A profound understanding of cell-material communications is imperative to progress in the field of t...
A profound understanding of cell-material communications is imperative to progress in the field of t...
A profound understanding of cell-material communications is imperative to progress in the field of t...
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...
Because of the unique properties that arise when the column size is comparable to either the length ...
The need to activate thermoplastic surfaces using robust and efficient methods has been driven by th...
Surface analysis is critical for the validation of microfluidic surface modifications for biology, c...
The need to activate thermoplastic surfaces using robust and efficient methods has been driven by th...
The need to activate thermoplastic surfaces using robust and efficient methods has been driven by th...
We report the surface modification of thermoplastic nanochannels and the evaluation of the surface c...
Thermoplastics have become attractive alternatives to glass/quartz for microfluidics, but the realiz...
Mixed-scale nano-and microfluidic networks were fabricated in thermoplastics using simple and robust...
Nanofludic devices provide a great platform for single molecular analysis. The unique phenomena in n...
263 pagesPolymer systems and nanocomposites thereof encompass an enormous array of materials with ap...
A profound understanding of cell-material communications is imperative to progress in the field of t...
A profound understanding of cell-material communications is imperative to progress in the field of t...
A profound understanding of cell-material communications is imperative to progress in the field of t...