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Europium (III) Organic Complexes in Porous Boron Nitride Microfibers: Efficient Hybrid Luminescent Material

机译:多孔氮化硼超细纤维中的((III)有机配合物:高效的混合发光材料

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摘要

We report the design and synthesis of a novel kind of organic-inorganic hybrid material via the incorporation of europium (III) β-diketonate complexes (Eu(TTA)3, TTA = 2-thenoyltrifluoroacetone) into one-dimensional (1D) porous boron nitride (BN) microfibers. The developed Eu(TTA)3@BN hybrid composites with typical 1D fibrous morphology exhibit bright visible red-light emission on UV illumination. The confinement of Eu(TTA)3 within pores of BN microfibers not only decreases the aggregation-caused quenching in solid Eu(TTA)3, but also improves their thermal stabilities. Moreover, The strong interactions between Eu(TTA)3 and porous BN matrix result in an interesting energy transfer process from BN host to TTA ligand and TTA ligand to Eu3+ ions, leading to the remarkable increase of red emission. The synthetic approach should be a very promising strategy which can be easily expanded to other hybrid luminescent materials based on porous BN.
机译:我们报告通过将and(III)β-二酮酸酯络合物(Eu(TTA)3,TTA = 2-thenoyltrifluoroacetone)掺入一维(1D)多孔硼中,设计和合成了一种新型的有机-无机杂化材料。氮化物(BN)超细纤维。具有典型的一维纤维形态的已开发的Eu(TTA)3 @ BN杂化复合材料在UV照射下表现出明亮的可见红光发射。将Eu(TTA)3限制在BN超细纤维的孔中,不仅减少了固态Eu(TTA)3中聚集引起的猝灭,而且提高了其热稳定性。此外,Eu(TTA)3与多孔BN基质之间的强相互作用导致了一个有趣的从BN主体到TTA配体和TTA配体到Eu 3 + 离子的能量转移过程,从而导致显着增加红色发射。合成方法应该是非常有前途的策略,可以轻松地扩展到基于多孔BN的其他混合发光材料。

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