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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Inhomogeneous Photoluminescence Characteristic in Carbon Nanodots and Electrophotoluminescence Measurements
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Inhomogeneous Photoluminescence Characteristic in Carbon Nanodots and Electrophotoluminescence Measurements

机译:碳纳米蛋白和电池致发光测量中的不均匀光致发光特性

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Photoluminescence (PL) spectra, time-resolved PL spectra, and PL decay profiles have been observed for carbon nanodots (CDs) with different excitation wavelengths in an embedded solid film and in solution. PL excitation spectra have been also observed with different monitoring wavelengths. Then, it is found in both solid film and solution that not only the location of the PL spectra but also the peak of the excitation spectra show a significant red shift, as the excitation and monitoring wavelengths become longer, respectively, indicating that the emitting states of the excitation-dependent PL are the real state to which direct absorption occurs from the ground state, not the transient trapped states produced by photoexcitation. It is shown that not only the excitation-dependent PL but also the excitation-independent PL with a peak at similar to 375 nm exist. The lifetimes of both PL emissions are very sensitive to the surroundings. Multiple emitting states that give excitation-dependent PL are ascribed to the inhomogeneous properties in prepared carbon nanodots, which is supported by the fluorescence lifetime image measurements. Electrophotoluminescence spectrum, that is, the electric-field-induced change in PL spectrum, has also been observed for the excitation-independent PL of CDs embedded in a poly(methyl methacrylate) film, and the magnitude of the change in electric dipole moment and molecular polarizability following emission has been determined.
机译:已经观察到光致发光(PL)光谱,时间分辨的PL光谱和PL衰减型材用于嵌入式实体膜和溶液中具有不同激发波长的碳纳多(CD)。已经用不同的监测波长观察到PL激励光谱。然后,在实体膜和解决方案中发现,不仅可以分别激发和监测波长而显示出显着的红色偏移的亮度,而且励磁光谱的峰值分别变得更长,表示发光状态潜在的依赖性PL是从地面状态发生的直接吸收的真实状态,而不是通过光透视产生的瞬态捕获状态。结果表明,不仅存在激励依赖性PL,而且还存在峰值的激励独立的PL,存在类似于375nm的峰值。 PL排放的寿命对周围环境非常敏感。将潜在的依赖性PL的多个发射状态归因于制备的碳纳多蛋白中的不均匀性质,其由荧光寿命图像测量负载。对于嵌入聚(甲基丙烯酸甲酯)膜中的激发型CD,以及电偶极矩和电力变化的大小,也已经观察到电茄致发光光谱,即PL光谱的电场诱导的PL光谱变化。已经确定了发射后的分子极化性。

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