Nanofibres are found in a broad variety of hierarchical biological systems as fundamental structural units, and nanofibrillar components are playing an increasing role in the development of advanced functional materials. Accurate determination of the mechanical properties of single nanofibres is thus of great interest, yet measurement of these properties is challenging due to the intricate specimen handling and the exceptional force and deformation resolution that is required. The atomic force microscope (AFM) has emerged as an effective, reliable tool in the investigation of nanofibrillar mechanics, with the three most popular approaches—AFM-based tensile testing, three-point deformation testing, and nanoindentation—proving preferable to c...
We present a procedure that allows a reliable determination of the elastic (Young's) modulus of soft...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
The development and application of nanofibres requires a thorough understanding of the mechanical pr...
Nanofibres are found in a broad variety of hierarchical biological systems as fundamental structural...
A novel method to perform nanoscale mechanical characterization of highly deformable nanofibers has ...
An atomic force microscope (AFM) fundamentally measures the interaction between a nanoscale AFM prob...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Atomic force microscope (AFM) has emerged as a powerful tool in the last two decades to study biolog...
We report on the use of three different atomic force spectroscopy modalities to determine the nanome...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
We report on the use of three different atomic force spectroscopy modalities to determine the nanome...
We present a procedure that allows a reliable determination of the elastic (Young's) modulus of soft...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
The development and application of nanofibres requires a thorough understanding of the mechanical pr...
Nanofibres are found in a broad variety of hierarchical biological systems as fundamental structural...
A novel method to perform nanoscale mechanical characterization of highly deformable nanofibers has ...
An atomic force microscope (AFM) fundamentally measures the interaction between a nanoscale AFM prob...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Atomic force microscope (AFM) has emerged as a powerful tool in the last two decades to study biolog...
We report on the use of three different atomic force spectroscopy modalities to determine the nanome...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
We report on the use of three different atomic force spectroscopy modalities to determine the nanome...
We present a procedure that allows a reliable determination of the elastic (Young's) modulus of soft...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
The development and application of nanofibres requires a thorough understanding of the mechanical pr...