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镧系元素铕配合物发光石墨烯纳米片的光学双重功能。

Optical bifunctionality of europium-complexed luminescent graphene nanosheets.

机构信息

Department of Mechanical Engineering and Materials Science, Rice University, 6100 Main Street, Houston, Texas 77005, United States.

出版信息

Nano Lett. 2011 Dec 14;11(12):5227-33. doi: 10.1021/nl202541n. Epub 2011 Nov 15.

Abstract

Graphene is an intriguing two-dimensional material, which could be modified for achieving tunable properties with many applications. Photoluminescence of graphene due to plasmonic emission is well-known, however, attempts to develop strong luminescent graphene have been difficult. Synthesis of a graphene-based material with a dual optical functionality, namely quenching the fluorescence of organic dyes while maintaining its own self-luminescence, is an interesting and challenging proposition. Here, we demonstrate this optical bifunctionality in a lattice-modified luminescent graphene, where europium(III) cations are complexed with graphene through oxygen functionalities. After excitation at 314 nm, a hypersensitive red emission is observed at 614 and 618 nm showing the complexation of europium(III) with graphene. We demonstrate dual functionality of this graphene by the quenching of luminescence of Rhodamine-B while displaying its own hypersensitive red emission. The decay lifetime observed through the time-resolved spectroscopy confirms its potential for applications in biosensing as well as optoelectronics.

摘要

石墨烯是一种很有前途的二维材料,可以通过修饰来实现可调谐的性质,具有多种应用。石墨烯的等离子体激元发射的光致发光是众所周知的,然而,开发强发光石墨烯的尝试一直很困难。合成具有双重光学功能的石墨烯基材料,即猝灭有机染料的荧光而保持其自身的自发光,是一个有趣和具有挑战性的命题。在这里,我们在晶格修饰的发光石墨烯中证明了这种光学双功能性,其中镧系元素(III)阳离子通过氧官能团与石墨烯络合。在 314nm 激发后,观察到在 614nm 和 618nm 处出现超灵敏的红光发射,表明镧系元素(III)与石墨烯的络合。我们通过猝灭罗丹明 B 的发光来证明这种石墨烯的双重功能,同时显示其自身的超灵敏红光发射。通过时间分辨光谱观察到的衰减寿命证实了其在生物传感和光电子学中的应用潜力。

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