Javascript must be enabled to continue!
Structure and properties of α‐cyclo[N]thiophenes as potential electronic materials – a theoretical study
View through CrossRef
AbstractDensity functional theory (DFT) calculations of ring‐shaped α‐cyclo[N]thiophenes with N = 2 to N = 18 have been performed for ideal structures of high symmetry (point groups Cnv and Dnh) and for optimum energy structures of lower symmetry (D2d, Cs, C2v, Ci or C1). Whereas the first three members of the series behave exceptionally the higher members are typical cyclothiophenes consisting of weakly interacting thiophene rings. In contrast to neutral compounds, cations and dications of cyclothiophenes with N ≥5 exhibit pronounced electron delocalizations along the carbon backbone. However, if the functional B3LYP is replaced by BH cations of large ring‐size cations show polaron‐type charge defects. According to broken symmetry DFT calculations dications with N = 14 and N = 18 have biradical character. These structures correspond to two‐polaron‐type structures rather than to dipolarons. The calculated vertical ionization energies of cyclo[N]thiophene are comparable with those of oligo[N]thiophenes of the same number of thiophene rings but the calculated absolute energies are probably too low at large ring size. Cyclothiophenes absorb light of lower energies than the related oligothiophenes. Cyclothiophenes belong to the strongly absorbing organic chromophores. In case of high molecular symmetry some of the excited states of cyclothiophenes are degenerate. The degeneracy is lifted with lower symmetries but the general absorption feature remains. The theoretical results are discussed with respect to recent experimental findings. Copyright © 2007 John Wiley & Sons, Ltd.
Title: Structure and properties of α‐cyclo[N]thiophenes as potential electronic materials – a theoretical study
Description:
AbstractDensity functional theory (DFT) calculations of ring‐shaped α‐cyclo[N]thiophenes with N = 2 to N = 18 have been performed for ideal structures of high symmetry (point groups Cnv and Dnh) and for optimum energy structures of lower symmetry (D2d, Cs, C2v, Ci or C1).
Whereas the first three members of the series behave exceptionally the higher members are typical cyclothiophenes consisting of weakly interacting thiophene rings.
In contrast to neutral compounds, cations and dications of cyclothiophenes with N ≥5 exhibit pronounced electron delocalizations along the carbon backbone.
However, if the functional B3LYP is replaced by BH cations of large ring‐size cations show polaron‐type charge defects.
According to broken symmetry DFT calculations dications with N = 14 and N = 18 have biradical character.
These structures correspond to two‐polaron‐type structures rather than to dipolarons.
The calculated vertical ionization energies of cyclo[N]thiophene are comparable with those of oligo[N]thiophenes of the same number of thiophene rings but the calculated absolute energies are probably too low at large ring size.
Cyclothiophenes absorb light of lower energies than the related oligothiophenes.
Cyclothiophenes belong to the strongly absorbing organic chromophores.
In case of high molecular symmetry some of the excited states of cyclothiophenes are degenerate.
The degeneracy is lifted with lower symmetries but the general absorption feature remains.
The theoretical results are discussed with respect to recent experimental findings.
Copyright © 2007 John Wiley & Sons, Ltd.
Related Results
Preface: phys. stat. sol. (b) 244/3
Preface: phys. stat. sol. (b) 244/3
AbstractThis is the 2nd special issue of physica status solidi (b) dedicated to materials exhibiting negative Poisson's ratio (auxetic) or other unusual or counter‐intuitive physic...
Pyrroles, thiophenes, and furans
Pyrroles, thiophenes, and furans
This chapter discusses pyrroles, thiophenes, and furans. Pyrrole, thiophene, and furan are five-membered ring heteroaromatic compounds containing one heteroatom. They derive their ...
Material property prediction and structural inverse design with modern deep learning techniques
Material property prediction and structural inverse design with modern deep learning techniques
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] To manipulate the mechanical and physical properties of bulk materials, like metals, ceramics, and semicondu...
On-surface synthesis of cyclo[20]carbon and cyclo[30]carbon from cyclo[10]carbon
On-surface synthesis of cyclo[20]carbon and cyclo[30]carbon from cyclo[10]carbon
On-surface synthesis recently enabled access to generate a series of cyclo[n]carbons (Cn, up to C26) via delicately designed precursors. However, for even larger cyclocarbons, synt...
Electronic Equipment Usage on Japanese Vehicles
Electronic Equipment Usage on Japanese Vehicles
<div class="htmlview paragraph">The application of a wide assortment of electronic systems to motor vehicles currently under serious consideration in the automotive and elect...
Electronic Voting Systems
Electronic Voting Systems
In 2001, Wand and colleagues published a paper titled “The Butterfly Did It” (see Wand, et al. 2001, cited under Voting System Neutrality) in which they argue that Palm Beach Count...
Authenticity and Identity of Electronic Records
Authenticity and Identity of Electronic Records
One of the key features of an electronic record is its authenticity. Ensuring the authenticity of managerial electronic records at all stages of its life cycle from the moment of i...
Ouroboros: From linear carbons to cyclic carbons, cyclo[25]carbon and cyclo[50]carbon
Ouroboros: From linear carbons to cyclic carbons, cyclo[25]carbon and cyclo[50]carbon
Carbon allotropes composed solely of sp-hybridized carbon atoms, namely linear and cyclic carbons (Cn), represent a unique class of materials with fascinating chemical structures a...

