Imaging and Manipulation of Adsorbates Using Dynamic Force Microscopy Proceedings from the AtMol Conference Series, Nottingham, UK, April 16-17, 2013 için kapak resmi
Imaging and Manipulation of Adsorbates Using Dynamic Force Microscopy Proceedings from the AtMol Conference Series, Nottingham, UK, April 16-17, 2013
Başlık:
Imaging and Manipulation of Adsorbates Using Dynamic Force Microscopy Proceedings from the AtMol Conference Series, Nottingham, UK, April 16-17, 2013
ISBN:
9783319174013
Edition:
1st ed. 2015.
Yayın Bilgileri:
Cham : Springer International Publishing : Imprint: Springer, 2015.
Fiziksel Tanımlama:
XX, 154 p. 62 illus., 40 illus. in color. online resource.
Series:
Advances in Atom and Single Molecule Machines,
Contents:
Pauli's Principle in Probe Microscopy -- Mechanical and Electrical Properties of Single Molecules -- Atom Manipulation Using Atomic Force Microscopy at Room Temperature -- A Considered Approach to Force Extraction from Dynamic Force Microscopy Measurements -- Theoretical Challenges of Simultaneous NC-AFM/STM Experiments -- Manipulation of Metal Nanoparticles on Insulating Surfaces -- Imaging of Defects on Ge(001):H by Non-Contact Atomic Force Microscopy -- Adsorption Structures of Amino Acids on Calcite(104) -- NC-AFM and KPFM Study of the Adsorption of a Triphenylene Derivative on KBr(001).
Abstract:
Imaging and Manipulation of Adsorbates using Dynamic Force Microscopy provides an overview of the latest developments in dynamic force microscopy (DFM) of atoms, molecules, and nanoparticles adsorbed on solid surfaces. Significant advances in the capabilities of this technique have been made in the last decade and this book represents a timely snapshot of the major research themes in the field, with a particular focus on the manipulation of matter at the atomic and (sub)molecular levels. This edited volume will be of keen interest to researchers active in nanoscience and its various sub-fields including, in particular, scanning probe microscopy.  This book expands on the previous volumes in the series Advances in Atom and Single Molecule Machines.
Dil:
English