The nanoscale structure and dynamics of proteins on surfaces has been extensively studied using various imaging techniques, such as transmission electron microscopy and atomic force microscopy (AFM) in liquid environments. These powerful imaging techniques, however, can potentially damage or perturb delicate biological material and do not provide chemical information, which prevents a fundamental understanding of the dynamic processes underlying their evolution under physiological conditions. Here, we use a platform developed in our laboratory that enables acquisition of infrared (IR) spectroscopy and AFM images of biological material in physiological liquids with nanometer resolution in a cell closed by atomically thin graphene membranes t...
Infrared (IR) nanospectroscopy performed in conjunction with atomic force microscopy (AFM) is a nove...
Optogenetics is a revolutionary method for studying neural activity by exploiting the optical stimul...
ABSTRACT: The spectroscopic characterization of bio-molecular structures requires nanometer spatial ...
Proteins unfold in chaotropic salt solutions, a process that is difficult to observe at the single p...
In-cell exploration of biomolecular constituents is the new frontier of cellular biology that will a...
Scattering scanning near-field optical microscopy (s-SNOM) has emerged as a powerful nanoscale spect...
| openaire: EC/H2020/820423/EU//S2QUIP | openaire: EC/H2020/965124/EU//FEMTOCHIP | openaire: EC/H202...
We present a new methodology that enables studies of the molecular structure of graphene-liquid inte...
Abstract Infrared fingerprint spectra can reveal the chemical nature of materials down to 20-nm deta...
Proteins unfold in chaotropic salt solutions, a process that is difficult to observe at the single p...
Membrane proteins govern many important functions in cells via dynamic oligomerization into active c...
Membrane proteins govern many important functions in cells via dynamic oligomerization into active c...
Single Layer Graphene (SLG) has emerged as a critically important nanomaterial due to its unique opt...
International audienceThe lipid-layer technique allows reconstituting transmembrane proteins at a hi...
This contribution reviews analytical possibilities of IR spectroscopic in situ studies of nl liquid ...
Infrared (IR) nanospectroscopy performed in conjunction with atomic force microscopy (AFM) is a nove...
Optogenetics is a revolutionary method for studying neural activity by exploiting the optical stimul...
ABSTRACT: The spectroscopic characterization of bio-molecular structures requires nanometer spatial ...
Proteins unfold in chaotropic salt solutions, a process that is difficult to observe at the single p...
In-cell exploration of biomolecular constituents is the new frontier of cellular biology that will a...
Scattering scanning near-field optical microscopy (s-SNOM) has emerged as a powerful nanoscale spect...
| openaire: EC/H2020/820423/EU//S2QUIP | openaire: EC/H2020/965124/EU//FEMTOCHIP | openaire: EC/H202...
We present a new methodology that enables studies of the molecular structure of graphene-liquid inte...
Abstract Infrared fingerprint spectra can reveal the chemical nature of materials down to 20-nm deta...
Proteins unfold in chaotropic salt solutions, a process that is difficult to observe at the single p...
Membrane proteins govern many important functions in cells via dynamic oligomerization into active c...
Membrane proteins govern many important functions in cells via dynamic oligomerization into active c...
Single Layer Graphene (SLG) has emerged as a critically important nanomaterial due to its unique opt...
International audienceThe lipid-layer technique allows reconstituting transmembrane proteins at a hi...
This contribution reviews analytical possibilities of IR spectroscopic in situ studies of nl liquid ...
Infrared (IR) nanospectroscopy performed in conjunction with atomic force microscopy (AFM) is a nove...
Optogenetics is a revolutionary method for studying neural activity by exploiting the optical stimul...
ABSTRACT: The spectroscopic characterization of bio-molecular structures requires nanometer spatial ...