Synthesis of dual emitting iodocuprates: can solvents switch the reaction outcome?

A remarkable effect of solvents on the reaction outcome has been discovered in the synthesis of halocuprates, as exemplified by the reaction of CuI with 1-methyl-2-methylthiopyridinium iodide, (Me-PySMe)I. When performed in acetonitrile, the reaction results in the selective self-assembly of iodocup...

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Veröffentlicht in:Inorganic chemistry frontiers 2020-06, Vol.7 (11), p.2195-223
Hauptverfasser: Artem'ev, Alexander V, Berezin, Alexey S, Taidakov, Ilya V, Bagryanskaya, Irina Yu
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Sprache:eng
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Zusammenfassung:A remarkable effect of solvents on the reaction outcome has been discovered in the synthesis of halocuprates, as exemplified by the reaction of CuI with 1-methyl-2-methylthiopyridinium iodide, (Me-PySMe)I. When performed in acetonitrile, the reaction results in the selective self-assembly of iodocuprate (Me-PySMe) n [Cu 2 I 3 ] n ( 1 ) featuring 1D double-stranded [Cu 2 I 3 ] n ribbons. Surprisingly, upon exploiting acetone as a medium under other conditions being similar, isomeric 1D iodocuprate 2 containing one-stranded [Cu 2 I 3 ] n chains is quantitatively formed. Iodocuprate 1 displays outstanding dual luminescence expressed by two emission bands at λ max = 680 and 550 nm, probably originating from the excited states of the cluster-centered ( 3 CC) type and iodocuprate-to-cation charge transfer one, respectively. The resulting emission color of 1 , being defined by the ratio of these bands, reversibly varies as a function of temperature spanning from deep-red (300 K) to yellow (77 K). Isomer 2 , being also dual emissive, does not exhibit prominent thermochromic luminescence. An unprecedented structure-directing effect of solvents in halocuprate self-assembly reactions was discovered. The compounds presented show remarkable dual luminescence, strongly changing the emission color upon varying temperature.
ISSN:2052-1553
2052-1545
2052-1553
DOI:10.1039/d0qi00346h