03802cam a2200433 i 45000010009000000050017000090070015000260080041000410100015000820200026000970200029001230200030001520350013001820400038001950500010002331000029002432450179002722640081004512640011005323000084005433360021006273370023006483380032006713470024007034900062007275051382007895200848021715880055030196500015030746500035030896500019031246500023031436500023031666500015031896550028032047000025032328300050032578560061033072182113720251110152616.0cr mn#nnnaucua130816t2013 gw gob 000 0 eng d a2019766840 a9783642388095 (ebook) a9783642388088 (hardback) a9783662512784 (paperback) a21821137 aDLCbengepnerdacDLCdUIAMerda 4aQH5051 aGrill, Leonhard,eeditor10aImaging and manipulating molecular orbitals :bproceedings of the 3rd AtMol International Workshop, Berlin 24-25 September 2012 /cedited by Leonhard Grill, Christian Joachim 1aBerlin, Heidelberg :bSpringer Berlin Heidelberg :bImprint: Springer,c2013 4c©2013 a1 online resource (viii, 206 pages 97 illustrations, 84 illustrations in color) atext2rdacontent acomputer2rdamedia aonline resource2rdacarrier atext filebPDF2rda1 aAdvances in Atom and Single Molecule Machines,x2193-96910 aObservations of individual Cu-Phthalocyanine molecules deposited on nano-tips in the field emission microscope -- High voltage STM imaging of single Copper -- Motional Analysis of A Single Organic Molecule Using Nano Carbon Materials: Scope of Atomic Level Imaging and Spectroscopy -- Imaging orbitals by ionization or electron attachment: the role of Dyson orbitals -- Mapping the electronic resonances of single molecule STM tunnel junction -- Manipulation and spectroscopy of individual phthalocyanine molecules on InAs(111)A with a low-temperature scanning tunneling microscope -- Electronic Structure and Properties of Graphene Nanoribbons: zigzag and armchair edges -- Imaging and manipulation of molecular electronic states on metal surfaces with scanning tunneling microscopy -- SPM imaging of trinaphthylene molecular states on a hydrogen passivated Ge(001) surface -- STM Theory and image interpretation -- Simulations of constant current STM images of open-shell systems -- Electronic transmission through a single impurity in a multi-configuration scattering matrix approach -- Electron transport through a molecular junction using a multiconfigurational description -- Visualizing Electron Correlation in Molecules Using a Scanning Tunneling Microscope: Theory and Ab-Initio Prediction -- Submolecular Resolution Imaging of C60: From Orbital Density to Bond Order. aImaging and Manipulating Molecular Orbitals celebrates the 60th anniversary of the first image of a single molecule by E. Müller. This book summarizes the advances in the field from various groups around the world who use a broad range of experimental techniques: scanning probe microscopy (STM and AFM), field emission microscopy, transmission electron microscopy, attosecond tomography and photoemission spectroscopy. The book is aimed at those who are interested in the field of molecular orbital imaging and manipulation. Included in the book are a variety of experimental techniques in combination with theoretical approaches which describe the spatial distribution and energies of the molecular orbitals. The goal is to provide the reader with an up-to-date summary on the latest developments in this field from various points of view. aDescription based on publisher-supplied MARC data. 0aBiophysics 0aInterfaces (Physical sciences) 0aNanotechnology 0aPhysical chemistry 0aSurfaces (Physics) 0aThin films 7aElectronic books (Form)1 aJoachim, C.,eeditor 0aAdvances in atom and single molecule machines41uhttps://link.springer.com/book/10.1007/978-3-642-38809-5