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Photoconductivity of Nanofilaments That are Self-Assembled from a Porphyrin with Long Alkyl-Chain Substituents

Schall, Anna P. (författare)
Haverford Coll, PA 19041 USA
Iavicoli, Patrizia (författare)
CSIC, Spain
John Qi, Zhengling (författare)
University of Penn, PA 19104 USA
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Menko, Julien (författare)
Haverford Coll, PA 19041 USA
Lu, Ye (författare)
University of Penn, PA 19104 USA
Linares, Mathieu (författare)
Linköpings universitet,Teoretisk kemi,Tekniska fakulteten
de Paula, Julio C. (författare)
Lewis and Clark Coll, OR 97219 USA
Amabilino, David B. (författare)
CSIC, Spain
Johnson, A. T. (författare)
University of Penn, PA 19104 USA
Smith, Walter F. (författare)
Haverford Coll, PA 19041 USA
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 (creator_code:org_t)
2015-11-06
2015
Engelska.
Ingår i: The Journal of Physical Chemistry C. - : AMER CHEMICAL SOC. - 1932-7447 .- 1932-7455. ; 119:46, s. 26154-26163
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Photoelectronically active nanostructures that are Self-assembled from organic rnolecules hold the prortu se of tailored functionality.with simple and inexpensive production. Comparison of nanoWires assembled from related componnds can give important insightS into the details of self-assembly and the,conduction meehanisms. We report the photoconductivity of nanofibers that are self-assembled from a porphyrin With long alkyl substituents. In contrast to previously studied porphyrin nanowires, the photoconductivity increases as atthospheric O-2 is increased. This can be explained-using the same model aS used in the previous studies, by assuming a different, line-up of the bands of the nanofilaments. with the electrode Fermi level. However, this model does not explain our observation that-at O-2 concentrations above 1%, the conduction increases with continued- illunation; this may be due to photoactivation of shallow O-2 adsorption sites. The overall conduction level is low even at high O-2 Concentration, because the alkyl substituents form an insulating sheath around the rianofibers. Such inSulation could be valuable in applications where it would prevent cross-talk between signal S darried in different nanofilaments. Schottky barriers at the interface between- organic nanostructures and electrodes strongly affect conduction and photoconduction, and are strongly influenced by atmospheric gases such, as O-2.

Ämnesord

NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

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