We present a nanospectroscopic device platform allowing simple and spatially resolved thermoelectric detection of molecular fingerprints of soft materials. Our technique makes use of a locally generated thermal gradient converted into a thermoelectric photocurrent that is read out in the underlying device. The thermal gradient is generated by an illuminated atomic force microscope tip that localizes power absorption onto the sample surface. The detection principle is illustrated using a concept device that contains a nanostructured strip of polymethyl methacrylate (PMMA) defined by electron beam lithography. The platform's capabilities are demonstrated through a comparison between the spectrum obtained by on-chip thermoelectric nanospectros...
Infrared spectroscopy resolves the structure of molecules by detecting their characteristic vibratio...
Infrared spectroscopy, especially for molecular vibrations in the fingerprint region between 600 and...
Germanium-on-silicon, mid-infrared waveguides are used to demonstrate molecular fingerprint sensing ...
We present a nanospectroscopic device platform allowing simple and spatially resolved thermoelectric...
Although mid-infrared (mid-IR) spectroscopy is a mainstay of molecular fingerprinting, its sensitivi...
Plasmon excitation enables extreme light confinement at the nanoscale, localizing energy in subwavel...
Thermal scanning probe lithography (tSPL) is a nanofabrication method for the chemical and physical ...
Molecular-level spectroscopy is crucial for sensing and imaging applications, yet detecting and quan...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
In this study, we have demonstrated that a scanning probe microscope (SPM) can be used for thermally...
Photodetectors are typically based either on photocurrent generation from electron–hole pairs in sem...
A low-cost plasmonic nanopillar array was synthesized using soft thermal nanoimprint lithography, an...
Infrared spectroscopy, especially for molecular vibrations in the fingerprint region between 600 and...
Infrared nanospectroscopy enables novel possibilities for chemical and structural analysis of nanoco...
Mid-infrared (mid-IR) optical spectroscopy of molecules is of large interest in physics, chemistry, ...
Infrared spectroscopy resolves the structure of molecules by detecting their characteristic vibratio...
Infrared spectroscopy, especially for molecular vibrations in the fingerprint region between 600 and...
Germanium-on-silicon, mid-infrared waveguides are used to demonstrate molecular fingerprint sensing ...
We present a nanospectroscopic device platform allowing simple and spatially resolved thermoelectric...
Although mid-infrared (mid-IR) spectroscopy is a mainstay of molecular fingerprinting, its sensitivi...
Plasmon excitation enables extreme light confinement at the nanoscale, localizing energy in subwavel...
Thermal scanning probe lithography (tSPL) is a nanofabrication method for the chemical and physical ...
Molecular-level spectroscopy is crucial for sensing and imaging applications, yet detecting and quan...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
In this study, we have demonstrated that a scanning probe microscope (SPM) can be used for thermally...
Photodetectors are typically based either on photocurrent generation from electron–hole pairs in sem...
A low-cost plasmonic nanopillar array was synthesized using soft thermal nanoimprint lithography, an...
Infrared spectroscopy, especially for molecular vibrations in the fingerprint region between 600 and...
Infrared nanospectroscopy enables novel possibilities for chemical and structural analysis of nanoco...
Mid-infrared (mid-IR) optical spectroscopy of molecules is of large interest in physics, chemistry, ...
Infrared spectroscopy resolves the structure of molecules by detecting their characteristic vibratio...
Infrared spectroscopy, especially for molecular vibrations in the fingerprint region between 600 and...
Germanium-on-silicon, mid-infrared waveguides are used to demonstrate molecular fingerprint sensing ...