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  Controlling intramolecular hydrogen transfer in a porphycene molecule with single atoms or molecules located nearby

Kumagai, T., Hanke, F., Gawinkowski, S., Sharp, J., Kotsis, K., Waluk, J., et al. (2014). Controlling intramolecular hydrogen transfer in a porphycene molecule with single atoms or molecules located nearby. Nature Chemistry, 6(1), 41-46. doi:10.1038/nchem.1804.

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manuscript (NCHEM-13071182 resubmission).pdf (Any fulltext), 351KB
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 Creators:
Kumagai, Takashi1, Author           
Hanke, Felix2, 3, Author
Gawinkowski, Sylwester4, Author
Sharp, John2, Author
Kotsis, Konstantinos2, Author
Waluk, Jacek4, Author
Persson, Mats2, Author
Grill, Leonhard1, 5, Author           
Affiliations:
1Physical Chemistry, Fritz Haber Institute, Max Planck Society, ou_634546              
2Surface Science Research Centre and Department of Chemistry, University of Liverpool, Liverpool L69 3BX, UK, ou_persistent22              
3Accelrys Ltd, 334 Science Park, CB4 0WN Cambridge, UK, ou_persistent22              
4Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, Warsaw 01-224, Poland, ou_persistent22              
5Department of Physical Chemistry, University of Graz, Heinrichstrasse 28, 8010 Graz, Austria, ou_persistent22              

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 Abstract: Although the local environment of a molecule can play an important role in its chemistry, rarely has it been examined experimentally at the level of individual molecules. Here we report the precise control of intramolecular hydrogen-transfer (tautomerization) reactions in single molecules using scanning tunnelling microscopy. By placing, with atomic precision, a copper adatom close to a porphycene molecule, we found that the tautomerization rates could be tuned up and down in a controlled fashion, surprisingly also at rather large separations. Furthermore, we extended our study to molecular assemblies in which even the arrangement of the pyrrolic hydrogen atoms in the neighbouring molecule influences the tautomerization reaction in a given porphycene, with positive and negative cooperativity effects. Our results highlight the importance of controlling the environment of molecules with atomic precision and demonstrate the potential to regulate processes that occur in a single molecule.

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Language(s): eng - English
 Dates: 2013-04-082013-10-172013-12-012014-01
 Publication Status: Issued
 Pages: 6
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1038/nchem.1804
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Title: Nature Chemistry
Source Genre: Journal
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Publ. Info: London, UK : Nature Publishing Group
Pages: - Volume / Issue: 6 (1) Sequence Number: - Start / End Page: 41 - 46 Identifier: ISSN: 1755-4330
CoNE: https://pure.mpg.de/cone/journals/resource/1755-4330