Photometric study and spectral characterization of samarium-tris-β-carboxylate complexes with heterocyclic auxiliary moieties

IF 4 2区 化学 Q2 CHEMISTRY, PHYSICAL
Riya Gaur, Priti Boora Doon
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引用次数: 0

Abstract

The orange light emanating Samarium complexes are synthesized, by using β-keto carboxylic acid (L) as the prime ligand and four auxiliary ligands: bathophenanthroline, 2,2′-bipyridyl, 1,10-phenanthroline and 4,4′-dimethyl-2,2′-bipyridyl. Elemental analysis is used to assess the elemental content of prepared compounds, Whereas the bonding evidence between metal and the primary and secondary sensitizers is ascertained by examining the FT-IR, NMR and UV-visible spectra. The luminescent parameters such as excitation, emission and decay time are determined by stimulating the complexes at λmax=353 nm. The bright orange emitting hue of the complex is attributable to the intense peak at 566nm, 602nm and 650nm due to the transition from 4G5/2 to 6H5/2, 6H7/2 and 6H9/2 respectively. Synthesized complexes show exceptional thermal stability which demonstrates their potential applications in military radars and solar devices. The crystalline nature of the synthesized complex is examined via XRD analysis which indicate that the particles lie in the nano range. The optoelectronic characteristics like refractive index and optical band gap also reflect the applicability of these complexes in photonic devices and wide-gap semiconductors. Furthermore, the colorimetric properties like CIE 1931 color coordinates, Correlated color temperature (CCT value ˂ 3000 K) and Exquisite color purity show conformance with the warm reddish-orange light coordinates provided by "The National Television System Committee and also validate their use as marvelous emitters in electroluminescent, display, OLEDs (organic light emitting diodes) and laser materials.

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来源期刊
Journal of Molecular Structure
Journal of Molecular Structure 化学-物理化学
CiteScore
7.10
自引率
15.80%
发文量
2384
审稿时长
45 days
期刊介绍: The Journal of Molecular Structure is dedicated to the publication of full-length articles and review papers, providing important new structural information on all types of chemical species including: • Stable and unstable molecules in all types of environments (vapour, molecular beam, liquid, solution, liquid crystal, solid state, matrix-isolated, surface-absorbed etc.) • Chemical intermediates • Molecules in excited states • Biological molecules • Polymers. The methods used may include any combination of spectroscopic and non-spectroscopic techniques, for example: • Infrared spectroscopy (mid, far, near) • Raman spectroscopy and non-linear Raman methods (CARS, etc.) • Electronic absorption spectroscopy • Optical rotatory dispersion and circular dichroism • Fluorescence and phosphorescence techniques • Electron spectroscopies (PES, XPS), EXAFS, etc. • Microwave spectroscopy • Electron diffraction • NMR and ESR spectroscopies • Mössbauer spectroscopy • X-ray crystallography • Charge Density Analyses • Computational Studies (supplementing experimental methods) We encourage publications combining theoretical and experimental approaches. The structural insights gained by the studies should be correlated with the properties, activity and/ or reactivity of the molecule under investigation and the relevance of this molecule and its implications should be discussed.
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