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Photophysical properties of a naphthalimide derivative encapsulated within Si-MCM-41, Ce-MCM-41 and Al-MCM-41

机译:包封在Si-MCM-41,Ce-MCM-41和Al-MCM-41中的萘二甲酰亚胺衍生物的光物理性质

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摘要

4-Piperazinyl-N-methyl-1,8-naphthalimide (PMN) was synthesized and encapsulated into mesoporous molecular sieves. The fluorescent emission spectra and fluorescence decay of PMN/M-MCM-41 (where M = Si, Ce, Al) were used to investigate the photophysical properties of the hybrid composites. The emission intensity of 4-piperazinyl-N-methyl-1,8-naphthalimide can be increased by decreasing the pH environment of the hybrid composites; the emission intensity varied with different MCM-41 hosts in the order: PMN/A1-MCM-41 > PMN/Si-MCM-41 > PMN/Ce-MCM-41; the fluorescence lifetime of PMN molecules followed the same order. The reasons for the improved fluorescence intensity and the prolonged lifetime of PMN in a low pH environment and Al-MCM-41 are discussed.
机译:合成了4-哌嗪基-N-甲基-1,8-萘二甲酰亚胺(PMN),并将其封装到中孔分子筛中。 PMN / M-MCM-41(其中M = Si,Ce,Al)的荧光发射光谱和荧光衰减用于研究杂化复合材料的光物理性质。降低杂化复合材料的pH值可以提高4-哌嗪基-N-甲基-1,8-萘二甲酰亚胺的发光强度。发射强度随不同的MCM-41主机依次变化:PMN / A1-MCM-41> PMN / Si-MCM-41> PMN / Ce-MCM-41; PMN分子的荧光寿命遵循相同的顺序。讨论了在低pH环境和Al-MCM-41中PMN荧光强度提高和寿命延长的原因。

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