Literature DB >> 16420023

[2.2]paracyclophane-bridged mixed-valence compounds: application of a generalized Mulliken-Hush three-level model.

Stephan Amthor1, Christoph Lambert.   

Abstract

A series of [2.2]paracylophane-bridged bis-triarylamine mixed-valence (MV) radical cations were analyzed by a generalized Mulliken-Hush (GMH) three-level model which takes two transitions into account: the intervalence charge transfer (IV-CT) band which is assigned to an optically induced hole transfer (HT) from one triarylamine unit to the second one and a second band associated with a triarylamine radical cation to bridge (in particular, the [2.2]paracyclophane bridge) hole transfer. From the GMH analysis, we conclude that the [2.2]paracyclophane moiety is not the limiting factor which governs the intramolecular charge transfer. AM1-CISD calculations reveal that both through-bond as well as through-space interactions of the [2.2]paracyclophane bridge play an important role for hole transfer processes. These electronic interactions are of course smaller than direct pi-conjugation, but from the order of magnitude of the couplings of the [2.2]paracyclophane MV species, we assume that this bridge is able to mediate significant through-space and through-bond interactions and that the cyclophane bridge acts more like an unsaturated spacer rather than a saturated one. From the exponential dependence of the electronic coupling V between the two triarylamine localized states on the distance r between the two redox centers, we infer that the hole transfer occurs via a superexchange mechanism. Our analysis reveals that even significantly longer pi-conjugated bridges should still mediate significant electronic interactions because the decay constant beta of a series of pi-conjugated MV species is small.

Entities:  

Year:  2006        PMID: 16420023     DOI: 10.1021/jp0550309

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  3 in total

1.  Exploring Structure-Property Relationships in a Bio-Inspired Family of Bipodal and Electronically-Coupled Bistriphenylamine Dyes for Dye-Sensitized Solar Cell Applications.

Authors:  Tamara Al-Faouri; Francis L Buguis; Saba Azizi Soldouz; Olga V Sarycheva; Burhan A Hussein; Reeda Mahmood; Bryan D Koivisto
Journal:  Molecules       Date:  2020-05-11       Impact factor: 4.411

2.  Bright Luminescence by Combining Chiral [2.2]Paracyclophane with a Boron-Nitrogen-Doped Polyaromatic Hydrocarbon Building Block.

Authors:  Mario R Rapp; Wolfgang Leis; Francesco Zinna; Lorenzo Di Bari; Tamara Arnold; Bernd Speiser; Michael Seitz; Holger F Bettinger
Journal:  Chemistry       Date:  2022-01-20       Impact factor: 5.020

3.  Effect of multi-armed triphenylamine-based hole transporting materials for high performance perovskite solar cells.

Authors:  Sungmin Park; Jin Hyuck Heo; Jae Hoon Yun; Tae Sub Jung; Kyungwon Kwak; Min Jae Ko; Cheol Hong Cheon; Jin Young Kim; Sang Hyuk Im; Hae Jung Son
Journal:  Chem Sci       Date:  2016-05-17       Impact factor: 9.825

  3 in total

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