We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecular interaction in liquid environments. The force sensor was created by attaching a chemically etched optical-fiber tip to the force sensor with UV epoxy, and characterized by imaging on a calibration grid. The performance of the COIFM was then demonstrated by measuring the force between two oxidized silicon surfaces in 1 mM KCl as a function of distance. The result was consistent with previously reported electrical double layer forces, suggesting that a COIFM using an optical-fiber tip is capable of measuring force in a liquid environment
A new interfacial‐force microscope capable of measuring the forces between two surfaces over the ent...
To examine the forces of acid-base adhesive interactions at the molecular level, we utilize the scan...
The mechanical properties of the ionic liquid 1-butyl-1-methylpyrrolidinium tris(pentafluoroethyl) t...
We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecula...
Application of the cantilever-based optical interfacial force microscope (COIFM) in an aqueous envir...
Application of Cantilever Based Optical Interfacial Microscopy (COIFM) in an aqueous environment is ...
An optical-fiber tip has previously been fabricated using a chemical etching method and implemented ...
A bio-molecular system passes through various metastable energy states until it reaches its lowest e...
We developed a cantilever based optical interfacial force microscopy (COIFM) that employs a microact...
We measured normal and friction forces simultaneously using a recently developed cantilever-based op...
Despite its ubiquity in living systems, water’s properties and behavior in small, confined spaces su...
International audienceThis article describes how an FM-AFM using a hanging ber force probe made from...
Cantilever-based optical interfacial force microscopy (COIFM) was applied to the investigation of th...
Summary: Cantilever-based optical interfacial force microscopy (COIFM)was applied to the investigati...
Scanning-probe microscopies (SPM) are presently widely used in remarkably diverse applications and, ...
A new interfacial‐force microscope capable of measuring the forces between two surfaces over the ent...
To examine the forces of acid-base adhesive interactions at the molecular level, we utilize the scan...
The mechanical properties of the ionic liquid 1-butyl-1-methylpyrrolidinium tris(pentafluoroethyl) t...
We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecula...
Application of the cantilever-based optical interfacial force microscope (COIFM) in an aqueous envir...
Application of Cantilever Based Optical Interfacial Microscopy (COIFM) in an aqueous environment is ...
An optical-fiber tip has previously been fabricated using a chemical etching method and implemented ...
A bio-molecular system passes through various metastable energy states until it reaches its lowest e...
We developed a cantilever based optical interfacial force microscopy (COIFM) that employs a microact...
We measured normal and friction forces simultaneously using a recently developed cantilever-based op...
Despite its ubiquity in living systems, water’s properties and behavior in small, confined spaces su...
International audienceThis article describes how an FM-AFM using a hanging ber force probe made from...
Cantilever-based optical interfacial force microscopy (COIFM) was applied to the investigation of th...
Summary: Cantilever-based optical interfacial force microscopy (COIFM)was applied to the investigati...
Scanning-probe microscopies (SPM) are presently widely used in remarkably diverse applications and, ...
A new interfacial‐force microscope capable of measuring the forces between two surfaces over the ent...
To examine the forces of acid-base adhesive interactions at the molecular level, we utilize the scan...
The mechanical properties of the ionic liquid 1-butyl-1-methylpyrrolidinium tris(pentafluoroethyl) t...