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氧化石墨烯的双荧光:时间分辨研究。

Dual fluorescence of graphene oxide: a time-resolved study.

机构信息

Chemistry Department, Hebei Normal University of Science and Technology, Qinhuangdao, Hebei Province, China.

出版信息

J Phys Chem A. 2012 Jul 12;116(27):7308-13. doi: 10.1021/jp301755b. Epub 2012 Jun 28.

Abstract

The fluorescence properties of graphene oxide (GO) was studied by recording the fluorescence lifetime, fluorescence emission, and excitation spectra, as well as UV-visible and near-IR absorption spectra. For the first time, we showed that a blue band (ca. 440 nm) and a long wavelength (LW) band (ca. 700 nm) are coexistent, which can be recorded simultaneously by controlling concentration, excitation wavelength, and pH values. Two bands are closely related by the protonation or deprotonation of GO. The blue band is favored by low GO concentration, short excitation wavelength, and high pH value, while the LW band is favored by low pH and long excitation wavelength. To reveal the nature of the dual emission of GO, the fluorescence lifetimes under various conditions were also measured. The blue band contains three emitting components; one of them has a lifetime as long as 10 ns, and its emitting intensity is fairly sensitive to pH, showing the potential for applications in sensing H(+) and fluorescence lifetime imaging. Combining the results under various conditions, we conclude that the electronic transition for this component is very likely due to n-π* transition. The LW band contains two main emitting components (0.2 and 2.1 ns) that also appear in the blue band as minor contributors; the related emission is assigned to π-π* transition. In summary, GO emission is of broadband (300-1250 nm), long-lived, pH sensitive, and excitation wavelength dependent. This makes it easily tailored for versatile applications.

摘要

我们研究了氧化石墨烯(GO)的荧光性质,通过记录荧光寿命、荧光发射和激发光谱以及紫外-可见和近红外吸收光谱来实现。我们首次表明,存在一个蓝带(约 440nm)和一个长波长(LW)带(约 700nm),通过控制浓度、激发波长和 pH 值可以同时记录到这两个带。这两个带通过 GO 的质子化或去质子化密切相关。蓝带在低 GO 浓度、短激发波长和高 pH 值的情况下更为有利,而 LW 带则在低 pH 和长激发波长的情况下更为有利。为了揭示 GO 双重发射的本质,我们还测量了在各种条件下的荧光寿命。蓝带包含三个发射成分;其中一个的寿命长达 10ns,其发射强度对 pH 非常敏感,有望应用于检测 H(+)和荧光寿命成像。结合各种条件下的结果,我们得出结论,该成分的电子跃迁很可能是由于 n-π跃迁引起的。LW 带包含两个主要的发射成分(0.2 和 2.1ns),它们也以较小的贡献出现在蓝带中;相关的发射归因于 π-π跃迁。总之,GO 发射具有宽带(300-1250nm)、长寿命、对 pH 值敏感且依赖于激发波长的特点。这使得它很容易被定制用于各种应用。

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