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Nano-TiO2 induced secondary structural transition of silk fibroin studied by two-dimensional Fourier-transform infrared correlation spectroscopy and Raman spectroscopy

机译:二维傅里叶变换红外相关光谱和拉曼光谱研究纳米TiO 2诱导的丝素蛋白二级结构转变

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摘要

By sol-gel processing, regenerated nano-TiO2/SF (silk fibroin) composite films were synthesized. The experimental results revealed that the nano-TiO2 particles were well dispersed in the regenerated silk fibroin. Using FT-IR and Raman spectroscopy, the secondary structures of these composite films with concentrations of 0, 0.2, 0.4, 0.8 and 1.6 wt% were characterized. Concentration-perturbed two-dimensional (2D) correlation spectra were calculated for the spectra in the 1800-1600 cm(-1) region. To investigate nano-TiO2 particles induced changes in the secondary structure and hydration, the slice spectra were calculated from the synchronous and asynchronous spectra, respectively. The transmittance IR and Raman spectra measurement indicated that the secondary structure of the pure silk film was mostly random coil and alpha-helix, while the composite films were beta-sheet. With increasing nano-TiO2 content, the secondary structure of composite films was changed from typical Silk I to typical Silk II. However, it was found that the transition of the SF's secondary structures would be restrained by excessive nano-TiO2 (over 0.8%) introduced into the composite SF films. Through the FT-IR absorbance and 2D correlation spectra, it was demonstrated that the formation of nano-TiO2 particles could induce the partial transformation of SF conformation from Silk I to Silk II.
机译:通过溶胶-凝胶工艺,合成了再生的纳米TiO2 / SF(丝素蛋白)复合膜。实验结果表明,纳米TiO2颗粒很好地分散在再生的丝素蛋白中。使用FT-IR和拉曼光谱,表征了这些复合膜的二级结构,其浓度为0、0.2、0.4、0.8和1.6重量%。为1800-1600 cm(-1)区域中的光谱计算了浓度扰动的二维(2D)相关光谱。为了研究纳米TiO 2颗粒引起的二级结构和水合作用的变化,分别从同步光谱和异步光谱计算切片光谱。红外光谱和拉曼光谱测量结果表明,纯丝膜的二级结构主要是无规卷曲和α-螺旋,而复合膜是β-折叠。随着纳米TiO2含量的增加,复合膜的二级结构从典型的Silk I变为典型的Silk II。然而,发现SF的二级结构的转变将受到引入复合SF膜中的过量纳米TiO 2(超过0.8%)的抑制。通过FT-IR吸收和二维相关光谱,证明了纳米TiO2颗粒的形成可以诱导SF构象从Silk I到Silk II的部分转变。

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