The phase imaging atomic force microscopy is a powerful tool in surface characterization of the biomaterials, and the resulting phase image is able to detect chemical variation and reveal more detailed surface properties than the morphological image. However, the chemical-and morphological-dependent phase images were still not distinguished well. In order to better understand actual occurring phase images, we examined non-carious human maxillary incisor, microphase separated polyurethane and self-assembling peptide nanofibres. We herein reported that phase image mainly plotted the morphological change: the phase peak corresponding to the morphological valley, and the morphological peak to the phase valley, and exhibited fine surface structu...
Werner E, Güth U, Brockhagen B, Doepke C, Ehrmann A. Examination of Polymer Blends by AFM Phase Imag...
We use atomic force microscopy (AFM) with phase detection imaging (PDI) in order to study the surfac...
International audienceDynamic atomic force microscopy is known for its ability to image soft materia...
The atomic force microscope (AFM) is a very promising and powerful tool for investigating a range of...
AbstractAtomic force microscope-based phase imaging in air is capable of elucidating variations in m...
Functional polymers currently represent a basic component of a large range of biological and biomedi...
Integrated information on ultrastructural surface texture and chemistry increasingly plays a role in...
Understanding the morphologies of molecules and particles has played a key role in understanding key...
Atomic force microscopy performed on single crystals of three different polymorphs of bovine insulin...
ABSTRACT: Pulsed force mode atomic force microscopy (AFM) has been used to study the morphology of t...
When a polymeric biomaterial is employed within a living system an interface is created between the ...
In this work we have designed a simple system to investigate empirically the image contrast of tappi...
Scanning Probe Microscopy techniques have proven very useful in the investigation of porous nanostru...
Asymmetric PS-b-PEO block copolymer exhibits well-ordered cylindrical morphology with nanoscale doma...
Engineering the next generation of smart materials will require new methods of surface characterizat...
Werner E, Güth U, Brockhagen B, Doepke C, Ehrmann A. Examination of Polymer Blends by AFM Phase Imag...
We use atomic force microscopy (AFM) with phase detection imaging (PDI) in order to study the surfac...
International audienceDynamic atomic force microscopy is known for its ability to image soft materia...
The atomic force microscope (AFM) is a very promising and powerful tool for investigating a range of...
AbstractAtomic force microscope-based phase imaging in air is capable of elucidating variations in m...
Functional polymers currently represent a basic component of a large range of biological and biomedi...
Integrated information on ultrastructural surface texture and chemistry increasingly plays a role in...
Understanding the morphologies of molecules and particles has played a key role in understanding key...
Atomic force microscopy performed on single crystals of three different polymorphs of bovine insulin...
ABSTRACT: Pulsed force mode atomic force microscopy (AFM) has been used to study the morphology of t...
When a polymeric biomaterial is employed within a living system an interface is created between the ...
In this work we have designed a simple system to investigate empirically the image contrast of tappi...
Scanning Probe Microscopy techniques have proven very useful in the investigation of porous nanostru...
Asymmetric PS-b-PEO block copolymer exhibits well-ordered cylindrical morphology with nanoscale doma...
Engineering the next generation of smart materials will require new methods of surface characterizat...
Werner E, Güth U, Brockhagen B, Doepke C, Ehrmann A. Examination of Polymer Blends by AFM Phase Imag...
We use atomic force microscopy (AFM) with phase detection imaging (PDI) in order to study the surfac...
International audienceDynamic atomic force microscopy is known for its ability to image soft materia...