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Synthesis and Luminescent Properties of Europium Complexes Covalently Bonded to Hybrid Materials Based on MCM-41 and Poly(Ionic Liquids)

机译:基于MCM-41和聚(离子液体的杂化材料共价键合的合成与发光性能

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摘要

Due to the wide potential application in the fields of sensing, lighting materials, and optical–electrical multifunctional devices, rare earth complex hybrid materials have been studied extensively over the past decades. A poly(ionic liquid)/mesoporous-based hybrid system which has been functionalized by the covalently linked europium complexes was reported here. Through surface modification with a coupling agent bearing an vinyl group, MCM-41 was chosen as the carrier matrix for poly(ionic liquids) (PILs) and europium compounds, and based on that, novel luminescent hybrid materials were prepared by confining the ionic liquid and europium complexes into the inorganic Si–O frameworks. The resulting organic/inorganic materials are chemically bonded hybrids which show good photoluminescent properties such as broad excitation spectra, line-like emission spectra, and long luminescence lifetimes. The PILs/MCM-41/Eu3+ hybrid reported here is a rare earth multifunctional material which is believed to have potential applications in the field of optical–electrical materials.
机译:由于传感,照明材料和光学电气多功能器件领域的潜力宽,过去几十年来广泛地研究了稀土复杂混合材料。在此报道,通过共价连接的铕络合物官能化的聚(离子液体)/中孔的混合系统。通过用含有乙烯基的偶联剂的表面改性,选择MCM-41作为聚(离子液体)(Pils)和铕化合物的载体基质,并通过限制离子液体来制备新的发光杂化材料和铕络合物进入无机SI-O框架。所得的有机/无机材料是化学键合的杂化,其显示出良好的光致发光性能,例如宽激发光谱,线状发射光谱和长发光寿命。这里报道的Pils / MCM-41 / EU3 +杂种是一种稀土多功能材料,其被认为具有光学电气材料领域的潜在应用。

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