Electronic, optical, and computational studies of a redox-active napthalenediimide-based coordination polymer

Leong, CF; Chan, B; Faust, TB; Turner, P; D'Alessandro, DM

HERO ID

2232220

Reference Type

Journal Article

Year

2013

Language

English

PMID

24283401

HERO ID 2232220
In Press No
Year 2013
Title Electronic, optical, and computational studies of a redox-active napthalenediimide-based coordination polymer
Authors Leong, CF; Chan, B; Faust, TB; Turner, P; D'Alessandro, DM
Journal Inorganic Chemistry
Volume 52
Issue 24
Page Numbers 14246-14252
Abstract The new one-dimensional coordination framework (Zn(DMF)NO3)2(NDC)(DPMNI), where NDC = 2,6-naphthalenedicarboxylate and DPMNI = N,N'-bis(4-pyridylmethyl)-1,4,5,8-naphthalenetetracarboxydiimide, which has been crystallographically characterized, exhibits two redox-accessible states due to the successive reduction of the naphthalenediimide (NDI) ligand core. Solid-state electrochemical and vis-near-IR spectroelectrochemical measurements coupled with density functional theory (DFT) calculations enabled the origins of the optical transitions in the spectra of the monoradical anion and dianion states of the material to be assigned. Electron paramagnetic resonance (EPR) spectroscopy revealed that the paramagnetic radical anion state of the DPMNI core could be accessed upon broad-spectrum white light irradiation of the material, revealing a long-lived excited state, possibly stabilized by charge delocalization which arises from extensive π-π* stacking interactions between alternating NDC and NDI aromatic cores which are separated by a distance of 3.580(2) Å.
Doi 10.1021/ic402173z
Pmid 24283401
Wosid WOS:000328668400055
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English