2009
DOI: 10.1002/adma.200801635
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Lanthanide‐Containing Light‐Emitting Organic–Inorganic Hybrids: A Bet on the Future

Abstract: Interest in lanthanide-containing organic-inorganic hybrids has grown considerably during the last decade, with the concomitant fabrication of materials with tunable attributes offering modulated properties. The potential of these materials relies on exploiting the synergy between the intrinsic characteristics of sol-gel derived hosts (highly controlled purity, versatile shaping and patterning, excellent optical quality, easy control of the refractive index, photosensitivity, encapsulation of large amounts of … Show more

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Cited by 873 publications
(557 citation statements)
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References 219 publications
(303 reference statements)
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“…The significant number of published examples that can be found were extensively reviewed elsewhere. [2][3][4] Here we will emphasise some illustrative examples in which the hybrid host belongs to one of the following classes: amineand amide-functionalized matrices; 5,6 organosilicas; 7,8 mesostructured materials; 9,10 ionogels; 11,12 and liganddecorated nanoparticles (NPs). [13][14][15] Besides the intra-4f lines, the emission spectra of Ln 3+ -based amine-and amide-functionalized organic-inorganic hybrids display a broad emission in the blue-green spectral region (380-550 nm) ascribed to the hybrid host.…”
Section: Hybrids As Phosphorsmentioning
confidence: 99%
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“…The significant number of published examples that can be found were extensively reviewed elsewhere. [2][3][4] Here we will emphasise some illustrative examples in which the hybrid host belongs to one of the following classes: amineand amide-functionalized matrices; 5,6 organosilicas; 7,8 mesostructured materials; 9,10 ionogels; 11,12 and liganddecorated nanoparticles (NPs). [13][14][15] Besides the intra-4f lines, the emission spectra of Ln 3+ -based amine-and amide-functionalized organic-inorganic hybrids display a broad emission in the blue-green spectral region (380-550 nm) ascribed to the hybrid host.…”
Section: Hybrids As Phosphorsmentioning
confidence: 99%
“…This large broad band, already observed in the nondoped matrices, results from a convolution of the emission originated in the cross-linkages between the organic and inorganic counter parts with electron-hole recombinations occurring in the siloxane nanoclusters. [4][5][6] The relative intensity between the hybrid host broad band and the intra-4f lines strongly depends on the activation/deactivation of the host-to-Ln 3+ energy-transfer processes, 4 allowing, therefore, the fine-tuning of the hybrids emission chromaticity across the Commission Internationale d'Eclairage (CIE) diagram. This emission-colour fine tuning along the CIE chromaticity diagram can be also modulated by chemical factors (Ln 3+ concentration, polymer chain length, nature of the cross-linkage and anion type) and physical parameters (excitation wavelength and temperature), Fig.…”
Section: Hybrids As Phosphorsmentioning
confidence: 99%
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“…[1][2][3][4][5][6][7] Processable lanthanide-based luminescent molecular materials can be obtained by doping the lanthanide(III) complex in a polymer matrix. 8,9 Typical applications of such polymer films are in organic light emitting diodes (OLEDs) [10][11][12][13][14] or in active optical polymer fibers for data transmission.…”
Section: Introductionmentioning
confidence: 99%