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首页> 外文期刊>ACS applied materials & interfaces >Chiral Supramolecular Gels with Lanthanide Ions: Correlation between Luminescence and Helical Pitch
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Chiral Supramolecular Gels with Lanthanide Ions: Correlation between Luminescence and Helical Pitch

机译:具有镧系元素离子的手性超分子凝胶:发光与螺旋间距之间的相关性

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摘要

We report the correlation between the fluorescence intensity and the helical pitch of supramolecular hydrogels with Tb(III) and Eu(III) as well as their inkjet printing patterning as an application. The luminescent gels, which exhibited three different emissions of red, green, and blue, could be prepared without and with Eu(III) and Tb(III). The luminescence intensity of supramolecular gels (gel-Tb and gel-Eu) composed of Tb(III) and Eu(III) was ca. 3-fold larger than that of the sol (1+Tb(III) or 1+Eu(III)), which was attributed to large tilting angles between molecules. By AFM observations, these gels showed well-defined right-handed helical nanofibers formed by coordination bonds in which the helical pitch lengths were strongly dependent on the concentrations of lanthanide ions. In particular, the large luminescence intensity of gel-Tb exhibited a smaller helical pitch length than that of gel-1 due to relatively weak pi-pi stacking with large tilting angles between molecules. The luminescence intensities were enhanced linearly with increasing concentrations of lanthanide ions. This is the first example of the correlation between the helical pitch length and the luminescence intensity of supramolecular materials. The coordination bonding in supramolecular hydrogels had a strong influence on rheological properties. We also developed a water-compatible inkjet printing system to generate luminescent supramolecular gels on A4-sized paper. The images of a logo and the text were composed of three different emissions and were well-printed on A4-sized paper coated with gel-1.
机译:我们报告了用Tb(III)和Eu(III)的荧光强度和超分子水凝胶的螺旋间距以及它们作为应用的喷墨印刷图案化的相关性。可以在没有欧盟(III)和TB(III)的情况下制备表现出三种不同排放的三种不同排放的发光凝胶。由TB(III)和EU(III)组成的超分子凝胶(凝胶TB和凝胶-EU)的发光强度是CA。 3倍大于溶胶(1 + Tb(III)或1 + EU(III)),其归因于分子之间的大倾斜角度。通过AFM观察,这些凝胶显示通过配位键形成的良好定义的右手螺旋纳米纤维,其中螺旋间距长度强烈依赖于镧系元素的浓度。特别地,由于在分子之间的大倾斜角度大的倾斜角度堆叠,凝胶-TB的大发光强度比凝胶-1的较小的螺旋间距长度呈现比凝胶-1的较小螺距长度。随着镧系元素浓度的增加,发光强度随着镧系元素的增加而增强。这是螺旋间距长度与超分子材料的发光强度之间的相关性的第一个例子。超分子水凝胶的配位键合对流变性质的影响很大。我们还开发了一种水兼容的喷墨印刷系统,用于在A4大小纸上产生发光超分子凝胶。徽标和文本的图像由三种不同的排放组成,并在涂有凝胶-1的A4大纸上印刷。

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