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  Understanding charge-transfer phenomena in a canonical electron donor-acceptor complex: Tetrathiafulvalene (TTF)-Tetracyanoquinodimethane (TCNQ)

Smith, S. C., Yoon, M., Park, C., Atalla, V., & Scheffler, M. (2014). Understanding charge-transfer phenomena in a canonical electron donor-acceptor complex: Tetrathiafulvalene (TTF)-Tetracyanoquinodimethane (TCNQ). Abstracts of Papers of the American Chemical Society, 247: Enfl 349. Retrieved from http://acselb-529643017.us-west-2.elb.amazonaws.com/chem/247nm/program/lookup_view.php?word=Attala&where=authors&return=%2Fchem%2F247nm%2Fprogram%2Fauthorindex.php%3Fnum%3D0%26stop%3D80%26page%3D8%26start%3D560.

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 Creators:
Smith, Sean C1, Author
Yoon, Mina1, Author
Park, Changwon1, Author
Atalla, Viktor2, Author           
Scheffler, Matthias2, Author           
Affiliations:
1Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States, ou_persistent22              
2Theory, Fritz Haber Institute, Max Planck Society, ou_634547              

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 Abstract: Recent studies of hybrid layered interfacial systems have revealed remarkable electronic, visible light response and (photo)catalytic properties. Such properties appear often to be intimately related to intrinsic charge transfer properties of the hybrid interfacial systems in their ground electronic states. Hence, a sound fundamental understanding of charge transfer properties of complexes and interfaces is an important objective. In this work, we make a detailed exploration of the charge transfer properties of a canonical electron donor-acceptor pair: the Tetrathiafulvalene (TTF)-Tetracyanoquinodimethane (TCNQ) dimer. Our study shows that the simple frontier-orbital based picture of electron transfer for this system as derived from conventional DFT calculations is both qualitatively and quantitatively erroneous, in the sense that it rationalizes the experimentally known electronic properties for the wrong reasons. A recently developed DFT approach that alleviates self-interaction errors (Physical Review B 88, 165122) is utilized to illustrate that charge transfer effects in the TTF-TCNQ dimer are not only much smaller than predicted by conventional (semi)local functionals such as Perdew-Burke-Ernzerhof (PBE) and local density approximation (LDA), but in addition are highly asymmetric – depending sensitively on relative orientation of the two molecules.

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Language(s): eng - English
 Dates: 2014-03-162014
 Publication Status: Issued
 Pages: 1
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
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Title: Abstracts of Papers of the American Chemical Society
  Abbreviation : Abstr. Pap. Am. Chem. S.
Source Genre: Journal
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Pages: - Volume / Issue: 247 Sequence Number: Enfl 349 Start / End Page: - Identifier: Other: 0065-7727
CoNE: https://pure.mpg.de/cone/journals/resource/954928522856