By Moh’d Rezeq, Christian Joachim, Ma Han Lwin, Francisco Ample Navarro (auth.), Leonhard Grill, Christian Joachim (eds.)
Imaging and Manipulating Molecular Orbitals celebrates the sixtieth anniversary of the 1st snapshot of a unmarried molecule through E. Müller. This publication summarizes the advances within the box from numerous teams worldwide who use a huge diversity of experimental ideas: scanning probe microscopy (STM and AFM), box emission microscopy, transmission electron microscopy, attosecond tomography and photoemission spectroscopy. The booklet is aimed toward those who find themselves attracted to the sector of molecular orbital imaging and manipulation. integrated within the publication are quite a few experimental innovations together with theoretical techniques which describe the spatial distribution and energies of the molecular orbitals. The target is to supply the reader with an up to date precis at the newest advancements during this box from a variety of issues of view.
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Extra info for Imaging and Manipulating Molecular Orbitals: Proceedings of the 3rd AtMol International Workshop, Berlin 24-25 September 2012
Sample text
J. Phys. Chem. C 112, 5241 (2008). 1021/jp7114548 Part II STEM Motional Analysis of a Single Organic Molecule by TEM Using Nanocarbon Materials: Scope of Atomic Level Imaging and Spectroscopy Masanori Koshino and Kazutomo Suenaga Abstract The unique environment of single molecule analysis using nanocarbon materials is discussed in comparison with the conventional analysis of organic crystals by transmission electron microscopy (TEM). The methodology provides motional information of individual molecules in addition to the static images.
Nat. Phys. 8(3), 232–237 (2012) 35. : An electronic time scale for chemistry. Proc. Natl. Acad. Sci. USA 103, 6793–6798 (2006) 36. : On the feasibility of an ultrafast purely electronic reorganization in lithium hydride. Chem. Phys. 338, 342–347 (2007) 37. : Stereocontrol of attosecond time-scale electron dynamics in ABCU using ultrafast laser pulses: a computational study. PCCP 13(18), 8331–8344 (2011) Part IV LT-UHV-STM Mapping the Electronic Resonances of Single Molecule STM Tunnel Junctions We-Hyo Soe, Carlos Manzano and Christian Joachim Abstract In this chapter is presented how the electron probability distributions of molecular states are imaged in real space using scanning tunneling microscopy.
Acknowledgments A part of the study is supported by Kakenhi from MEXT (23681026 and 22000008), JST-Kenkyu Kasoku, and JST-S-innovation. 36 M. Koshino and K. Suenaga References 1. : High voltage electron microscopy for image discrimination of constituent atoms in crystals and molecules. Chem. Scr. 14, 47–61 (1979) 2. : Molecular resolution electron-micrographs of monolamellar paraffin crystals. Science 229(4712), 461–462 (1985) 3. : Carbon nanotube encapsulated fullerenes: A unique class of hybrid materials.