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Highly NIR-Emissive Lanthanide Polyselenides
Journal article   Peer reviewed

Highly NIR-Emissive Lanthanide Polyselenides

Anna Kornienko, Brian F. Moore, G. Ajith Kumar, Mei-Chee Tan, Richard E. Riman, Mikhail G. Brik, Thomas J. Emge and John G. Brennan
Inorganic chemistry, Vol.50(18), pp.9184-9190
19/09/2011
PMID: 21866912

Abstract

Chemistry Chemistry, Inorganic & Nuclear Physical Sciences Science & Technology
Ln(SePh)(3) (Ln = Ce, Pr, Nd), prepared by reduction of PhSeSePh with elemental Ln and Hg catalyst, reacts with excess elemental Se to give (py)(11)Ln(7)Se(21)HgSePh, an ellipsoidal polyselenide cluster. The molecular structure contains two square arrays of eight- or nine-coordinate Ln fused at one edge to form a V shape that is also capped on the concave side by a centrally located nine-coordinate (Se-3)pyLn(Se-3) and on the convex side by a 2-fold disordered SeHgSePh. The central Ln coordinates to selenido, triselenido, and pyridine ligands, while all other Ln coordinate to selenido, diselenido, triselenido, and pyridine ligands. Thermal treatment of the Pr compound at 650 degrees C gave Pr2Se3 and Pr3Se4. NIR emission studies of the Nd compound show four transitions from the excited-state F-4(3/2) ion to I-4(9/2), I-4(11/2), I-4(13/2), and I-4(15/2) states. The F-4(3/2) ion to I-4(11/2) transition (1075 nm emission) exhibited 43% quantum efficiency. This is the highest quantum efficiency reported for a 'molecular' Nd compound and leads a group of selenide-based dusters that has shown extraordinary quantum efficiency. In terms of efficiency and concentration, these compounds compare favorably with solid-state materials.

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