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TEM characterization of organic nanocrystals grown in sol–gel thin films

机译:溶胶-凝胶薄膜中生长的有机纳米晶体的TEM表征

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The tetracene molecule (2,3-benzanthracene, C8H12) was used to synthesize nanocrystals grown in sol–gel thin films, ranging from 10 to 100 nm of diameter. This confined nucleation and growth was compared to microcrystallizations of the same molecule in free solution. Transmission electron microscopy (TEM) was used to characterize these two kinds of tetracene crystals. The observation was performed under low-dose illumination to avoid amorphization of the samples during electron irradiation. Spatial confinement and size distribution of micro- and nanocrystals were compared. Using electron microdiffraction and diffraction patterns simulations, we showed that free microcrystals and nanocrystals confined in gel glasses exhibit the same triclinic $ Poverline 1 $ structure. In addition, time-resolved spectroscopy was used to record fluorescence decays, showing a monoexponential fluorescence decay for nanocrystals while microcrystals exhibit a multiexponential decay. The simple signature of nanocrystals luminescence is promising for the future development of chemical or biological sensors.
机译:并四苯分子(2,3-苯并蒽,C8 H12 )用于合成生长在溶胶-凝胶薄膜中的纳米晶体,直径在10至100 nm之间。将这种有限的成核和生长与相同分子在游离溶液中的微晶进行了比较。透射电子显微镜(TEM)用于表征这两种并四苯晶体。在低剂量照明下进行观察以避免电子辐照期间样品的非晶化。比较了微晶体和纳米晶体的空间限制和尺寸分布。使用电子微衍射和衍射图样模拟,我们发现受限于凝胶玻璃中的自由微晶和纳米晶表现出相同的三斜晶$ Poverline 1 $结构。另外,时间分辨光谱法用于记录荧光衰减,显示纳米晶体的单指数荧光衰减,而微晶体表现出多指数衰减。纳米晶体发光的简单特征对于化学或生物传感器的未来发展是有希望的。

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