We present a review of the use of selected nanofabricated thin films to deliver a host of capabilities and insights spanning bioanalytical and biophysical chemistry, materials science, and fundamental molecular-level research. We discuss approaches where thin films have been vital, enabling experimental studies using a variety of optical spectroscopies across the visible and infrared spectral range, electron microscopies, and related techniques such as electron energy loss spectroscopy, X-ray photoelectron spectroscopy, and single molecule sensing. We anchor this broad discussion by highlighting two particularly exciting exemplars: a thin-walled nanofluidic sample cell concept that has advanced the discovery horizons of ultrafast spectrosco...
In order to study the molecular structure and dynamics of liquid water with soft x-ray probes, sampl...
Most methods for optical visualization beyond the diffraction limit rely on fluorescence emission by...
Recent advances in material science and fabrication techniques enabled development of nanoscale appl...
We present a review of the use of selected nanofabricated thin films to deliver a host of capabiliti...
Silicon nitride is a ubiquitous and well-established nanofabrication material with a host of favoura...
Nanometer-sized structures, surfaces and sub-surface phenomena have played an enormous role in scien...
Nanopore biosensors are a relatively new tool for single-molecule detection, whose inception was ins...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...
Over the last five years, solid state nanopore technology advanced to rival biological pores as a pl...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...
Nanopores, nanometer sized holes in membranes, have recently come into prominence as tools for singl...
In this review, we summarize some of our efforts in parallel with other research groups' studies in ...
We present the microfabrication of silicon nitride membrane supports ('windows') for transmission el...
In order to study the molecular structure and dynamics of liquid water with soft x-ray probes, sampl...
Most methods for optical visualization beyond the diffraction limit rely on fluorescence emission by...
Recent advances in material science and fabrication techniques enabled development of nanoscale appl...
We present a review of the use of selected nanofabricated thin films to deliver a host of capabiliti...
Silicon nitride is a ubiquitous and well-established nanofabrication material with a host of favoura...
Nanometer-sized structures, surfaces and sub-surface phenomena have played an enormous role in scien...
Nanopore biosensors are a relatively new tool for single-molecule detection, whose inception was ins...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...
Over the last five years, solid state nanopore technology advanced to rival biological pores as a pl...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...
Nanopores, nanometer sized holes in membranes, have recently come into prominence as tools for singl...
In this review, we summarize some of our efforts in parallel with other research groups' studies in ...
We present the microfabrication of silicon nitride membrane supports ('windows') for transmission el...
In order to study the molecular structure and dynamics of liquid water with soft x-ray probes, sampl...
Most methods for optical visualization beyond the diffraction limit rely on fluorescence emission by...
Recent advances in material science and fabrication techniques enabled development of nanoscale appl...