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通过在杂化纳米纤维中进行高效的两步能量转移实现白光发射。

Toward white light emission through efficient two-step energy transfer in hybrid nanofibers.

机构信息

Istituto per lo Studio delle Macromolecole (ISMac-CNR), via Bassini, 15, Milan 20133, Italy.

出版信息

ACS Nano. 2010 Mar 23;4(3):1409-16. doi: 10.1021/nn9017922.

Abstract

Nanosized zeolite L crystals containing about 550 strongly luminescent acceptor molecules have been modified by grafting a conjugated oligomer on their external surface. The 25 nm sized crystals have consequently been embedded in polymeric nanofibers obtained by electrospinning. The fluorescent molecule grafted on the external surface allows addressing the guests in the zeolite nanochannels through an efficient two-step energy transfer from the polymer nanofiber. The so obtained hybrid nanofibers exhibit intense emissions from the three fundamental colors using a single excitation wavelength. The molecule grafted on the external surface of the nanocrystal also induces a higher compatibility of the hybrid organic/inorganic nanomaterials in the conjugated polymer and therefore high concentrations of zeolites embedded in the nanofibers are obtained. Playing on this concentration, the emission of the nanofiber can be tuned and eventually be used for fabricating white-light emitting nanofibers. This hybrid nanomaterial opens new perspectives for low-cost nano organic light emitting diodes fabrication with considerable impact on the lighting and display technologies.

摘要

载有约 550 个强发光体的纳米沸石 L 晶体已通过在其外表面接枝共轭寡聚物进行了修饰。尺寸为 25nm 的晶体随后被嵌入到通过电纺获得的聚合物纳米纤维中。接枝在外部表面的荧光分子允许通过从聚合物纳米纤维的有效两步能量转移来寻址沸石纳米通道中的客体。如此获得的杂化纳米纤维在使用单个激发波长时表现出三种基色的强烈发射。接枝在纳米晶体外表面上的分子还诱导了在共轭聚合物中杂化有机/无机纳米材料的更高相容性,因此在纳米纤维中嵌入了高浓度的沸石。通过利用这种浓度,可以调节纳米纤维的发射,最终可以用于制造发白光的纳米纤维。这种杂化纳米材料为制造低成本纳米有机发光二极管开辟了新的前景,对照明和显示技术具有重大影响。

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