2016
DOI: 10.1016/j.saa.2015.11.004
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Europium(III) tris-dibenzoylmethanate as an efficient chemosensor for detection of ammonia

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Cited by 29 publications
(18 citation statements)
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“…Eu(III) carboxylate dibenzoylmethanates (CDMs) have unique optical and magnetic properties [12,13]. In continuation of our studies [12][13][14][15][16][17] on investigation of the optical chemosensor properties of Eu(III) complexes, in the present work we report the results of an investigation of the luminescent chemosensor properties of Eu(III) CDMs of the composition Eu(Dbm) 2 Acid • nH 2 О, where Dbm is the dibenzoylmethanate ion; Acid is the anion of a carboxylic acid, namely, formic (Form − ), acetic (Ас − ), propionic…”
Section: Introductionsupporting
confidence: 59%
“…Eu(III) carboxylate dibenzoylmethanates (CDMs) have unique optical and magnetic properties [12,13]. In continuation of our studies [12][13][14][15][16][17] on investigation of the optical chemosensor properties of Eu(III) complexes, in the present work we report the results of an investigation of the luminescent chemosensor properties of Eu(III) CDMs of the composition Eu(Dbm) 2 Acid • nH 2 О, where Dbm is the dibenzoylmethanate ion; Acid is the anion of a carboxylic acid, namely, formic (Form − ), acetic (Ас − ), propionic…”
Section: Introductionsupporting
confidence: 59%
“…For the crystal structure of a multinuclear analogue of the title compound, see [9]. Analogous mononuclear coordination compounds have also been reported for praseodymium [10], neodymium [11], samarium [10], europium [12,13], holmium [14] and erbium [10]. In the crystal, three possible hydrogen bonds supported by the coordinated water molecule as donor and lanthanum-coordinated oxygen atoms as acceptors are identified.…”
Section: Commentmentioning
confidence: 96%
“…Карбоксилатодибензоилметанаты (КДМ) Eu(III) обладают уникальными оптическими и магнитными свойствами [12,13]. В продолжение наших работ [12][13][14][15][16][17] ной группы комплексов практически постоянна и составляет 200−225 cm −1 . Следует отметить, что соединения второй группы обладают значительной люминесценцией и при 300 K в отличие от соединений первой группы, для которых характерно практически полное тушение люминесценции при комнатной температуре [12].…”
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