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首页> 外文期刊>RSC Advances >Ultrasound accelerated sugar based gel for in situ construction of a Eu3+-based metallogel via energy transfer in a supramolecular scaffold
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Ultrasound accelerated sugar based gel for in situ construction of a Eu3+-based metallogel via energy transfer in a supramolecular scaffold

机译:超声加速糖基凝胶,用于通过超分子支架中的能量转移原位构建基于Eu3 +的金属化合物

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摘要

Two sugar functionalized naphthalimide derivatives (S1, S2) self-assembled into organogels by a heating-cooling process or triggered by ultrasound. The gelation properties in organic solvents were examined by several experiments including UV-vis, fluorescence, FT-IR spectra and SEM, XRD techniques. It was deduced that minor changes in the terminal group had great impact on the gelation and ultrasound responsive properties. Moreover, ultrasound triggered the formation of a yellow emissive gel (S1, with lifetimes in the range of ns) that was readily doped with Eu3+ in situ affording luminescent gels with red emission color (with lifetimes in the range of mu s), which expressed efficient energy transfer from the S1 assembly to Eu3+ ion. It was presented that the efficient energy transfer only happened in the ordered fibrous aggregates of S1, whereas, the ET process was not observed in the solution state, indicating the phase control on the ET process. Such findings would pave a new way for the construction of novel rare earth based luminescent materials.
机译:两种糖官能化的萘二甲酰亚胺衍生物(S1,S2)通过加热冷却过程自组装成有机凝胶,或由超声波触发。通过包括紫外可见,荧光,FT-IR光谱和SEM,XRD技术在内的数项实验检查了有机溶剂中的胶凝特性。可以推断,末端基团的细微变化对凝胶化和超声响应特性有很大影响。此外,超声触发了黄色发光凝胶(S1,寿命在ns范围内)的形成,该凝胶易于原位掺杂Eu3 +,提供了具有红色发射色的发光凝胶(寿命在μs范围内),表达如下:从S1组件到Eu3 +离子的有效能量转移。结果表明,有效的能量传递仅发生在S1的有序纤维聚集体中,而在固溶状态下未观察到ET过程,表明ET过程的相控。这些发现将为构建新型的稀土基发光材料铺平道路。

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