Due to its high specific surface area and chemical stability, porous silica is used as a support structure in numerous applications, including heterogeneous catalysis, biomolecule immobilization, sensors, and liquid chromatography. Reversed-phase liquid chromatography (RPLC), which uses porous silica support particles, has become an indispensable separations tool in quality control, pharmaceutics, and environmental analysis requiring identification of compounds in mixtures. For complex samples, the need for higher resolution separations requires an understanding of the time scale of processes responsible for analyte retention in the stationary phase. In the present work, single-molecule fluorescence imaging is used to observe transport of i...
dissertationThe development of techniques to probe molecular transport and the dynamics of molecular...
In reversed-phase liquid chromatography (RPLC), retained analytes can diffuse faster along the hydro...
A recently developed stripping protocol to completely remove the stationary phase of reversed-phase ...
Due to its high specific surface area and chemical stability, porous silica is used as a support str...
Due to its high specific surface area and chemical stability, porous silica is used as a support str...
Due to its high specific surface area and chemical stability, porous silica is used as a support str...
Reversed-phase liquid chromatography (RPLC) is a widely used technique for molecular separations. St...
Reversed-phase liquid chromatography (RPLC) is a widely used technique for molecular separations. St...
The efficiency of chromatographic separations decreases markedly when peaks exhibit asymmetry (e.g.,...
In reverse-phase liquid chromatography, the surface area stationary phase is proportional to analyte...
We used single-molecule fluorescence microscopy to study self-diffusion of a feedstock-like probe mo...
We used single-molecule fluorescence microscopy to study self-diffusion of a feedstock-like probe mo...
We used single-molecule fluorescence microscopy to study self-diffusion of a feedstock-like probe mo...
The understanding of diffusion through porous materials is a crucial aspect for designing superior c...
In reversed-phase liquid chromatography (RPLC), analyte molecules retained on the hydrophobic statio...
dissertationThe development of techniques to probe molecular transport and the dynamics of molecular...
In reversed-phase liquid chromatography (RPLC), retained analytes can diffuse faster along the hydro...
A recently developed stripping protocol to completely remove the stationary phase of reversed-phase ...
Due to its high specific surface area and chemical stability, porous silica is used as a support str...
Due to its high specific surface area and chemical stability, porous silica is used as a support str...
Due to its high specific surface area and chemical stability, porous silica is used as a support str...
Reversed-phase liquid chromatography (RPLC) is a widely used technique for molecular separations. St...
Reversed-phase liquid chromatography (RPLC) is a widely used technique for molecular separations. St...
The efficiency of chromatographic separations decreases markedly when peaks exhibit asymmetry (e.g.,...
In reverse-phase liquid chromatography, the surface area stationary phase is proportional to analyte...
We used single-molecule fluorescence microscopy to study self-diffusion of a feedstock-like probe mo...
We used single-molecule fluorescence microscopy to study self-diffusion of a feedstock-like probe mo...
We used single-molecule fluorescence microscopy to study self-diffusion of a feedstock-like probe mo...
The understanding of diffusion through porous materials is a crucial aspect for designing superior c...
In reversed-phase liquid chromatography (RPLC), analyte molecules retained on the hydrophobic statio...
dissertationThe development of techniques to probe molecular transport and the dynamics of molecular...
In reversed-phase liquid chromatography (RPLC), retained analytes can diffuse faster along the hydro...
A recently developed stripping protocol to completely remove the stationary phase of reversed-phase ...