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Benzoquinone-Bridged Heterocyclic Zwitterions as Building Blocks for Molecular Semiconductors and Metals.

作者信息

Lekin Kristina, Leitch Alicea A, Assoud Abdeljalil, Yong Wenjun, Desmarais Jacques, Tse John S, Desgreniers Serge, Secco Richard A, Oakley Richard T

机构信息

Department of Chemistry , University of Waterloo , Waterloo , Ontario N2L 3G1 , Canada.

Department of Earth Sciences , University of Western Ontario , London , Ontario N6A 5B7 , Canada.

出版信息

Inorg Chem. 2018 Apr 16;57(8):4757-4770. doi: 10.1021/acs.inorgchem.8b00485. Epub 2018 Apr 5.

Abstract

In pursuit of closed-shell building blocks for single-component organic semiconductors and metals, we have prepared benzoquino-bis-1,2,3-thiaselenazole QS, a heterocyclic selenium-based zwitterion with a small gap (λ = 729 nm) between its highest occupied and lowest unoccupied molecular orbitals. In the solid state, QS exists in two crystalline phases and one nanocrystalline phase. The structures of the crystalline phases (space groups R3 c and P2/ c) have been determined by high-resolution powder X-ray diffraction methods at ambient and elevated pressures (0-15 GPa), and their crystal packing patterns have been compared with that of the related all-sulfur zwitterion benzoquino-bis-1,2,3-dithiazole QT (space group Cmc2). Structural differences between the S- and Se-based materials are interpreted in terms of local intermolecular S/Se···N'/O' secondary bonding interactions, the strength of which varies with the nature of the chalcogen (S vs Se). While the perfectly two-dimensional "brick-wall" packing pattern associated with the Cmc2 phase of QT is not found for QS, all three phases of QS are nonetheless small band gap semiconductors, with σ ranging from 10 S cm for the P2/ c phase to 10 S cm for the R3 c phase. The bandwidths of the valence and conduction bands increase with applied pressure, leading to an increase in conductivity and a decrease in thermal activation energy E. For the R3 c phase, band gap closure to yield an organic molecular metal with a σ of ∼10 S cm occurs at 6 GPa. Band gaps estimated from density functional theory band structure calculations on the ambient- and high-pressure crystal structures of QT and QS correlate well with those obtained experimentally.

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