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Title: Synthesis, structure and optical studies of a family of three-dimensional rare-earth aminoisophthalates [M(mu(2)-OH)(C8H5NO4)] (M = Y3+, La3+, Pr3+, Nd3+, Sm3+, Eu3+, Gd3+, Dy3+, and Er3+)
Authors: Sarma, D
Prabu, M
Biju, S
Reddy, M L P
Natarajan, S
Keywords: Rare earths
Metal-organic frameworks
Luminescence
Up-conversion properties
Coordination polymers
Microporous metal
Hydrothermal synthesis
Lanthanide complexes
Issue Date: 2010
Publisher: Wiley
Citation: European journal of Inorganic Chemistry 24:3813-3822;Aug 2010
Abstract: A hydrothermal reaction of the acetate salts of the rare-earths, 5-aminoisophthalic acid (H(2)AIP), and NaOH at 150 degrees C for 3 days gave rise to a new family of three-dimensional rare-earth aminoisophthalates, [M(mu(2)-OH)(C8H5NO4)] [M = Y3+ (I), La3+ (II), Pr3+ (III), Nd3+ (IV), Sm3+ (V), Eu3+ (VI), Gd3+ (VII), Dy3+ (VIII), and Er3+ (IX)]. The structures contain M-O(H)-M chains connected by AIP anions. The AIP ions are connected to five metal centers and each metal center is connected with five AIP anions giving rise to a unique (5,5) net. To the best of our knowledge, this is the first observation of a (5,5) net in metal-organic frameworks that involve rare-earth elements. The doping of Eu3+/(3+) ions in place of Y3+/ La3+ in the parent structures gave rise to characteristic metal-centered emission (red = Eu3+, green = Tb3+). Life-time studies indicated that the excited emission states in the case of Eu3+ (4 mol-% doped) are in the range 0.287-0.490 ms and for Tb3+ (4 mol-% doped) are in the range of 1.265-1.702 ms. The Nd3+-containing compound exhibits up-conversion behavior based on two-photon absorption when excited using λ = 580 nm.
URI: http://ir.niist.res.in:8080/jspui/handle/123456789/1264
ISSN: 1434-1948
Appears in Collections:2010

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