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
International audienceThis article describes how an FM-AFM using a hanging ber force probe made from...
Summary: Cantilever-based optical interfacial force microscopy (COIFM)was applied to the investigati...
Cantilever-based optical interfacial force microscopy (COIFM) was applied to the investigation of th...
We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecula...
We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecula...
Application of Cantilever Based Optical Interfacial Microscopy (COIFM) in an aqueous environment is ...
Application of the cantilever-based optical interfacial force microscope (COIFM) in an aqueous envir...
We developed a cantilever based optical interfacial force microscopy (COIFM) that employs a microact...
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 measured normal and friction forces simultaneously using a recently developed cantilever-based op...
Atomic force microscopy (AFM) is one of the most important tools that lead current nanoscience and n...
Despite its ubiquity in living systems, water’s properties and behavior in small, confined spaces su...
We describe a highly improved atomic force microscope for quantitative nanomechanical measurements i...
This article describes how a frequency modulation AFM using a hanging fiber force probe made from a ...
International audienceThis article describes how an FM-AFM using a hanging ber force probe made from...
Summary: Cantilever-based optical interfacial force microscopy (COIFM)was applied to the investigati...
Cantilever-based optical interfacial force microscopy (COIFM) was applied to the investigation of th...
We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecula...
We developed a novel cantilever-based optical interfacial force microscope (COIFM) to study molecula...
Application of Cantilever Based Optical Interfacial Microscopy (COIFM) in an aqueous environment is ...
Application of the cantilever-based optical interfacial force microscope (COIFM) in an aqueous envir...
We developed a cantilever based optical interfacial force microscopy (COIFM) that employs a microact...
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 measured normal and friction forces simultaneously using a recently developed cantilever-based op...
Atomic force microscopy (AFM) is one of the most important tools that lead current nanoscience and n...
Despite its ubiquity in living systems, water’s properties and behavior in small, confined spaces su...
We describe a highly improved atomic force microscope for quantitative nanomechanical measurements i...
This article describes how a frequency modulation AFM using a hanging fiber force probe made from a ...
International audienceThis article describes how an FM-AFM using a hanging ber force probe made from...
Summary: Cantilever-based optical interfacial force microscopy (COIFM)was applied to the investigati...
Cantilever-based optical interfacial force microscopy (COIFM) was applied to the investigation of th...