丝素
材料科学
发光
光致发光
复合数
光子上转换
纳米复合材料
离子
扫描电子显微镜
化学工程
镧系元素
纳米技术
光电子学
复合材料
丝绸
有机化学
化学
工程类
作者
Roberta S. Pugina,Douglas Langie da Silva,André Riul,Manoel L. da Silva-Neto,Anderson S. L. Gomes,José Maurício A. Caiut
出处
期刊:Polymer
[Elsevier BV]
日期:2022-01-12
卷期号:241: 124541-124541
被引量:6
标识
DOI:10.1016/j.polymer.2022.124541
摘要
Silk Fibroin (SF) is a well-known protein, and has been employed in the development of diverse advanced materials for applications on medical and biological field, drug delivery systems and, also, in the electronic and photonic area. In addition, the up-conversion emission process could be proposed in fibroin-based materials and becomes a challenge for the photonic field based on biocompatible devices obtained from fibroin. To avoid the unwanted upconversion (UC) quenching process, herein, lanthanide ions were used as sensitizer and emitters ions, and them was incorporated into an inorganic particle obtained from spray pyrolysis synthesis. Specifically, we have obtained Yb 3+ and Er 3+ ions doped YAG (Yttrium Aluminum Garnet, Y 3 Al 5 O 12 ) spherical submicrometric particles, without spurious phases. All samples were characterized by X-Ray Diffraction, Scanning Electron Microscopy, and photoluminescence. The spectroscopic studies showed an intense UC emission from Er 3+ ions. Furthermore, looking for the development of a new fibroin composite which should be used as sensor or smart ink, we inserted the YAG particles in SF, and a new flexible composite film with controlled amounts of particles and tuned transmittance behavior was obtained. Finally, it was confirmed the characteristic luminescent behavior (as UC emission) of the particles in the composite films. As the emitters levels ( 2 H 11/2 and 4 S 3/2 ) from Er 3+ ions are thermally coupled, all materials (particles and films) were exploited as luminescent thermometer, and data confirmed the thermal sensibility comparable to other systems based on Yb 3+ /Er 3+ ions. • Up-conversion emission in SF-based materials for the photonic field was carried out. • This new material could be used as sensor or smart ink in anticounterfeiting. • SF-based materials were exploited as luminescent thermometer. • A new flexible composite film with tuned transmittance behavior was obtained.
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