Matches in SemOpenAlex for { <https://semopenalex.org/work/W2808487710> ?p ?o ?g. }
Showing items 1 to 67 of
67
with 100 items per page.
- W2808487710 abstract "This work offers a concept to predict and comprehend the electronic excited states in regular aggregates formed of quasi-one-dimensional organic materials. The tight face-to-face stacking of the molecules justifies the idealization of the crystals and clusters as weakly interacting stacks with leading effects taking place within the columnar sub-structures. Thus, the concept of the small radius exciton theory in linear molecular chains was adopted to examine the excitonic states. The excited states are composed of molecular excitations and nearest neighbor charge transfer (CT) excitations. We analyzed the structure and properties of the excited states which result from the coupling of Frenkel and CT excitons of arbitrary strength in finite chains with idealized free ends. With the help of a partially analytical approach to determine the excitonic states of mixed Frenkel CT character by introducing a complex wave vector, two main types of states can be distinguished. The majority of states are bulk states with purely imaginary wavevector. The dispersion relation of these state matches exactly the dispersion relation known from the infinite chain. The internal structure of the excitons in infinite chains is directly transferred to the bulk states in finite chains. TAMM-like surface states belong to the second class of states. Owing to the damping mediated by a a non-vanishing real part of the wavevector, the wave function of the surface states is localized at the outermost molecules. The corresponding decay length is exclusively determined by the parameterization of the coupling and is independent of the system size. It can therefore be assigned as a characteristic quantum length which plays a vital role for the understanding of system-dependent behavior of the states. The number and type of surface states occurring is predicted for any arbitrary coupling situation. The different nature of bulk and surface states leads to distinct quantum confinement effects. Two regimes are distinguished. The first regime, the case of weak confinement, is realized if the chain length is larger than the intrinsic length. Both kinds of states arrange with the system size according to their nature. Derived from the excitonic states of the infinite chain, the bulk states preserve their quasi-particle character in these large systems. Considered as a quasi-particle confined in box, they change their energy with the system size according to the particle-in-a-box picture. The surface states do not react to a change of the chain length at all, since effectively only the outermost molecules contribute to the wavefunction. The second regime holds if the states are strongly confined, i.e., the system is smaller than the intrinsic length. Both types of states give up their typical behavior and adopt similar properties.%%%%Diese Arbeit unterbreitet ein Konzept, um elektronische Anregungszustande in Aggregaten quasi-eindimensionaler organischer Materialien vorherzusagen und zu verstehen. Die dichte Packung der Molekule rechtfertigt die…" @default.
- W2808487710 created "2018-06-21" @default.
- W2808487710 creator A5008605189 @default.
- W2808487710 date "2003-01-01" @default.
- W2808487710 modified "2023-09-27" @default.
- W2808487710 title "Electronic excited states in quasi- one- dimensional organic solids with strong coupling of Frenkel and charge-transfer excitons" @default.
- W2808487710 hasPublicationYear "2003" @default.
- W2808487710 type Work @default.
- W2808487710 sameAs 2808487710 @default.
- W2808487710 citedByCount "0" @default.
- W2808487710 crossrefType "journal-article" @default.
- W2808487710 hasAuthorship W2808487710A5008605189 @default.
- W2808487710 hasConcept C113603373 @default.
- W2808487710 hasConcept C121332964 @default.
- W2808487710 hasConcept C131584629 @default.
- W2808487710 hasConcept C17729963 @default.
- W2808487710 hasConcept C181500209 @default.
- W2808487710 hasConcept C184779094 @default.
- W2808487710 hasConcept C188082385 @default.
- W2808487710 hasConcept C191897082 @default.
- W2808487710 hasConcept C192562407 @default.
- W2808487710 hasConcept C202579712 @default.
- W2808487710 hasConcept C26873012 @default.
- W2808487710 hasConcept C41999313 @default.
- W2808487710 hasConcept C62520636 @default.
- W2808487710 hasConcept C86025842 @default.
- W2808487710 hasConceptScore W2808487710C113603373 @default.
- W2808487710 hasConceptScore W2808487710C121332964 @default.
- W2808487710 hasConceptScore W2808487710C131584629 @default.
- W2808487710 hasConceptScore W2808487710C17729963 @default.
- W2808487710 hasConceptScore W2808487710C181500209 @default.
- W2808487710 hasConceptScore W2808487710C184779094 @default.
- W2808487710 hasConceptScore W2808487710C188082385 @default.
- W2808487710 hasConceptScore W2808487710C191897082 @default.
- W2808487710 hasConceptScore W2808487710C192562407 @default.
- W2808487710 hasConceptScore W2808487710C202579712 @default.
- W2808487710 hasConceptScore W2808487710C26873012 @default.
- W2808487710 hasConceptScore W2808487710C41999313 @default.
- W2808487710 hasConceptScore W2808487710C62520636 @default.
- W2808487710 hasConceptScore W2808487710C86025842 @default.
- W2808487710 hasLocation W28084877101 @default.
- W2808487710 hasOpenAccess W2808487710 @default.
- W2808487710 hasPrimaryLocation W28084877101 @default.
- W2808487710 hasRelatedWork W1495965927 @default.
- W2808487710 hasRelatedWork W1850123770 @default.
- W2808487710 hasRelatedWork W1968789940 @default.
- W2808487710 hasRelatedWork W1996623824 @default.
- W2808487710 hasRelatedWork W2001050219 @default.
- W2808487710 hasRelatedWork W2014687283 @default.
- W2808487710 hasRelatedWork W2019331431 @default.
- W2808487710 hasRelatedWork W2021704423 @default.
- W2808487710 hasRelatedWork W2061512549 @default.
- W2808487710 hasRelatedWork W2074287714 @default.
- W2808487710 hasRelatedWork W2080595499 @default.
- W2808487710 hasRelatedWork W2082736381 @default.
- W2808487710 hasRelatedWork W2564994415 @default.
- W2808487710 hasRelatedWork W2805024965 @default.
- W2808487710 hasRelatedWork W2899959895 @default.
- W2808487710 hasRelatedWork W3080550236 @default.
- W2808487710 hasRelatedWork W3095424964 @default.
- W2808487710 hasRelatedWork W3105925234 @default.
- W2808487710 hasRelatedWork W3186651377 @default.
- W2808487710 hasRelatedWork W411783149 @default.
- W2808487710 isParatext "false" @default.
- W2808487710 isRetracted "false" @default.
- W2808487710 magId "2808487710" @default.
- W2808487710 workType "article" @default.