利用电化学和光谱技术对酪蛋白进行物理表征

T. Senevirathne, G. Wickramasinghe, K. T. Hettiarachchi, V. Perera
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引用次数: 0

摘要

酪蛋白是牛奶中的主要蛋白质。通过添加酸降低牛奶的pH值,可以沉淀天然酪蛋白,用于制备光电器件电极用聚合物基质薄膜。本研究采用几种有机酸和无机酸分离酪蛋白。有机酸采用乙酸、乳酸、甲酸和抗坏血酸,无机酸采用H3PO4、H2SO4和HNO3。用不同酸沉淀的酪蛋白在导电氧化锡玻璃板上沉积了酪蛋白薄膜,并对其进行了电化学表征。但在上述测量中没有发现任何显著差异,所有酸的产率和结果都是相同的。因此,在进一步的研究中,考虑到稀释后的醋酸溶液的安全性,我们使用了从乙酸中分离的酪蛋白。利用阻抗和光谱学技术对这些酪蛋白薄膜进行了物理表征。Mott-Schottky分析表明酪蛋白具有n型电导率,在- 0.61V处具有平带电位。利用阻抗谱分析计算酪蛋白的电导率和介电常数分别为1.13×10-2 mS/m和6.6 mS/m。利用紫外可见光谱数据绘制了带隙图,确定了合成酪蛋白的带隙为3.9 eV。对酪蛋白样品的傅里叶变换红外光谱进行了重新编码,以确定合成的化合物中存在官能团。有了这个特性,很明显酪蛋白是一种有前景的材料来制造新型光电器件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical characterizations of casein by using electrochemical and spectroscopic techniques
Casein is the major protein present in cow’s milk. Lowering the pH of cow’s milk by addition of acids, natural casein can be precipitated, which can be utilized in fabricating thin film of polymer matrix for electrodes of optoelectronic devices. In the current study, casein was isolated by using several organic and inorganic acids. As organic acids, acetic, lactic, formic and ascorbic acids were used and H3PO4, H2SO4 and HNO3 were used as the inorganic acids. Thin films of casein were deposited on conducting tin oxide glass plates by using the casein precipitated with each acid and electrochemically characterized. But any significant difference could not be seen in the above measurements, where the same yield and results were obtained with all acids. Therefore, in further studies, casein isolated from acetic acid was used because of the safeness in using diluted acetic acid solution. These casein films were physically characterized by using impedance and optical spectroscopic techniques. Mott-Schottky analysis has shown that casein is having an n-type conductivity with flat band potential at - 0.61V. The impedance spectroscopic analysis was used to calculate the electrical conductivity and dielectric constant of casein which were found to be 1.13×10-2 mS/m and 6.6 respectively. The band gap of synthesized casein was determined by drawing tauc plot using the UV visible spectroscopic data which was found to be 3.9 eV. Fourier transform infrared spectra of casein sample were recoded to confirm the presence of functional groups in the synthesized compound. With this characterization, it was evident that casein is a prospective material to fabricate novel optoelectronic devices.
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