Synthesis and Luminescence Properties of a New Complex of Divalent Europium with Cinnamic Acid, Eu(L)2(THF)4 (L = Cinnamate Anion, С6H5СH=СHCOO–)

IF 0.6 4区 化学 Q4 CHEMISTRY, APPLIED
D. I. Galimov, K. S. Vasilyuk, S. M. Yakupova, R. G. Bulgakov
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引用次数: 0

Abstract

A previously unknown luminescent complex of divalent europium, Eu(L)2(THF)4 (L = cinnamate anion, С6H5СH=СHCOO), was prepared by the reaction of europium(III) cinnamate crystal hydrate Eu(L)3∙H2O with diisobutylaluminum hydride (iso-C4H9)2AlH in tetrahydrofuran at room temperature and atmospheric pressure. The complex Eu(L)2(THF)4 was isolated in the solid state and was characterized by complexometric titration (Eu2+) and elemental analysis (C, H, O). The yield of the complex Eu(L)2(THF)4 was 68%. The quantum yield of the photoluminescence (PL) of the complex (φPL = 0.05), the PL and PL excitation spectra, and the lifetime (τ = 377 ns) of the europium excited state, Eu2+*, in the complex were measured. The PL of the complex Eu(L)2(THF)4 is due to the interconfigurational transition 4f65d1 → 4f7 and is manifested as a broad diffuse band in the green part of the spectrum (λPL = 515 nm) with the nanosecond lifetime of the excited Eu2+* ions. The complex Eu(L)2(THF)4 exhibiting bright PL visible by naked eye can be used as a phosphor in the development of new materials with preset photophysical properties.

Abstract Image

二价铕与肉桂酸的新络合物 Eu(L)2(THF)4(L=肉桂酸阴离子,С6H5СH=СHCOO-)的合成与发光特性
以铕(III)肉桂酸晶体水合物Eu(L)3∙H2O与二异丁基氢化铝(iso-C4H9)2AlH在四氢呋喃中室温常压反应制备了一种以前未知的发光二价铕铕配合物Eu(L)2(THF)4 (L =肉桂酸阴离子,С6H5СH=СHCOO -)。通过络合滴定(Eu2+)和元素分析(C, H, O)对络合物Eu(L)2(THF)4进行了固体分离和表征,络合物Eu(L)2(THF)4的产率为68%。测量了配合物的光致发光量子产率(φPL = 0.05)、激发光谱和激发光谱,以及铕激发态Eu2+*的寿命(τ = 377 ns)。配合物Eu(L)2(THF)4的PL是由4f65d1→4f7的构型间跃迁引起的,在光谱的绿色部分(λPL = 515 nm)表现为宽漫射带,激发的Eu2+*离子的寿命为纳秒级。铕(L)2(THF)4配合物具有肉眼可见的明亮PL,可作为荧光粉用于开发具有预定光物理性质的新材料。
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来源期刊
CiteScore
1.60
自引率
11.10%
发文量
63
审稿时长
2-4 weeks
期刊介绍: Russian Journal of Applied Chemistry (Zhurnal prikladnoi khimii) was founded in 1928. It covers all application problems of modern chemistry, including the structure of inorganic and organic compounds, kinetics and mechanisms of chemical reactions, problems of chemical processes and apparatus, borderline problems of chemistry, and applied research.
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