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首页> 外文期刊>Macromolecular chemistry and physics >Silk Fibroin-Based Films Enhance Rhodamine 6G Emission in the Solid State: A Chemical-Physical Analysis of their Interactions for the Design of Highly Emissive Biomaterials
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Silk Fibroin-Based Films Enhance Rhodamine 6G Emission in the Solid State: A Chemical-Physical Analysis of their Interactions for the Design of Highly Emissive Biomaterials

机译:基于丝素蛋白的薄膜增强了固态的罗丹明6g排放:对高发光生物材料设计的相互作用的化学物理分析

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摘要

Described herein is the preparation of dye-doped films employing silk fibroin (SF) as a biomaterial, capable of preserving the optical properties of the monomeric dye in the solid state, a critical requisite for optical and biolaser applications. A comprehensive physical-chemical characterization is reported for SF films doped with Rhodamine 6G, an ideal candidate for photonics and optoelectronics. Fourier transform infrared spectroscopy (FTIR), circular dichroism (CD) and X-Ray diffraction (XRD) provide information on SF secondary conformation in the presence of rhodamine. UV-vis absorption spectra and exciton CD inform on the structure of encapsulated rhodamine, while changes in dye photophysical properties illuminate the molecular mechanism of the involved host-guest interactions. SF host environment inhibits rhodamine dimer formation, indicating that SF is an optimum matrix to keep rhodamine essentially monomeric at concentrations as high as 7 mm in the film. The relevant optical properties of these films and the easiness of their preparation, make these systems optimal candidates for innovative photonic technologies.
机译:本文描述的是制备使用丝素蛋白(SF)作为生物材料的染料掺杂膜,能够在固态中保留单体染料的光学性质,这是光学和Biolaser应用的关键必要条件。据报道掺杂有罗丹明6G的SF薄膜,是光子学和光电子的理想候选的SF薄膜的综合物理化学表征。傅里叶变换红外光谱(FTIR),圆形二色(CD)和X射线衍射(XRD)提供了在罗丹明存在下的SF二级构象的信息。 UV-Vis吸收光谱和Exciton CD通知封装的罗丹明的结构,而染料的变化照亮了所涉及的宿主相互作用的分子机制。 SF宿主环境抑制罗丹明二聚体形成,表明SF是最佳基质,以使罗丹明基本上在膜中高达7mm的浓度以高达7mm的单体。这些薄膜的相关光学性质及其制备的容易性,使这些系统成为创新的光子技术的最佳候选者。

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