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January 12, 2022
Bruker today announced the release of the JPK NanoWizard® V BioAFM, a novel system that marks a milestone in automation and ease of use for life science atomic force microscopy research.
January 4, 2022
Read about the recent developments in AFM and its importance in graphene research.
December 29, 2021
Atomic force microscopy is a powerful technique that aids in imaging surfaces of nanostructures. Continue reading to learn more.
December 24, 2021
Atomic force microscopy (AFM) is a powerful tool for studying biologically relevant soft materials.
December 21, 2021
Bruker today announced the release of the JPK NanoWizard® V BioAFM, a novel system that marks a milestone in automation and ease of use for life science atomic force microscopy research. NanoWizard V is a very fast, automated BioAFM that can optionally be fully integrated with advanced optical microscopes.
December 9, 2021
Molecular structure elucidation by atomic force microscopy (AFM) has been demonstrated as a powerful method to gain insights into the structure and formation of matter.
December 8, 2021
Atomic force microscopy (AFM) is a powerful microscopy technique. It is used to acquire high-resolution images at the nanoscale to better understand the properties of matter.
December 8, 2021
Understanding the interactions at the water-solid interfaces at the molecular level has been challenging. However, advancements in atomic force microscopy (AFM) have enabled atomic resolution imaging of water-solid interfaces.
December 7, 2021
Park Systems, a world-leading manufacturer of atomic force microscopy (AFM) systems, has integrated robotics and machine learning into its latest atomic force microscope. The AFM features the first-ever fully automated imaging process for research users.
December 7, 2021
Researchers have recently created a new ultrafast amplitude detector to enable even greater temporal resolution for high-speed atomic force microscopy. Their paper may form part of the foundation for a faster atomic force microscope that would enable non-destructive inspection of fast, dynamic, biomolecular processes and events.