An air-stable anionic two-dimensional semiconducting metal-thiolate network and its exfoliation into ultrathin few-layer nanosheets
The black, small-bandgap semiconducting framework Eu-dfdmat features extensive Eu 3+ -sulfur bridges from the linear linker 2,5-difluoro-3,6-dimercaptoterephthalate (dfdmt). Each Eu center is chelated to four dfdmt linkers to form an anionic coordination sphere involving four carboxyl O and four mer...
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Veröffentlicht in: | Chemical communications (Cambridge, England) England), 2020-03, Vol.56 (25), p.3645-3648 |
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Sprache: | eng |
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Zusammenfassung: | The black, small-bandgap semiconducting framework Eu-dfdmat features extensive Eu
3+
-sulfur bridges from the linear linker 2,5-difluoro-3,6-dimercaptoterephthalate (dfdmt). Each Eu center is chelated to four dfdmt linkers to form an anionic coordination sphere involving four carboxyl O and four mercapto S centers (EuO
4
S
4
), wherein the charge buildup can be alleviated by the electron-withdrawing fluoro groups. The extensive metal-linker bonding, together with a trace of Eu
2+
species, appears to boost electronic interaction in the 2D net, generating a small band gap of 1.31 eV (946 nm), albeit a modest conductivity (
e.g.
, 10
−6
S m
−1
). The crystals also exhibit persistent EPR signals indicative of organic radicals (
g
= 2.002). The Eu-dfdmt solid are stable in air and can be exfoliated into ultrathin nanosheets (
ca.
5 nm; 6-8 layers).
Metal-thiolate networks are topical electronic materials, but hard to crystallize: this one makes big single crystals, and boasts small band gap, stable radical organic linkers, and facile exfoliation into nanosheets. |
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ISSN: | 1359-7345 1364-548X |
DOI: | 10.1039/c9cc09349d |