Silva Neto J F, Pereira W O, Cavalcante L A, Oliveira Neto J G, Graça M P F, Gavinho S R, Amaral F M B, Santos A O, Sombra A S B, Mendes Fernando, Macêdo A A M
Instituto Federal do Maranhão - Campus Imperatriz, Laboratório de Pesquisa, 65919-050, Imperatriz, Brasil.
Universidade Federal do Maranhão, CCSST, 65900-410, Imperatriz, Brasil.
Chem Biodivers. 2023 Feb;20(2):e202200888. doi: 10.1002/cbdv.202200888. Epub 2023 Jan 26.
Aiming of self-sustainable production, the search for biodegradable and biocompatible materials has brought with it the need to know the physicochemical and dielectric characteristics of polysaccharide-based composite structures, which can be used as important and promising raw materials for biotechnology and electronic industries. Galactomannans are polysaccharides, extracted from seeds and microbiological sources, consisting of mannose and galactose. In this context, this work aimed to extract, purify and characterize by XRD, FTIR and impedance spectroscopy galactomannan obtained from seeds of Adenanthera pavonina L. The purification process was made with ethyl alcohol at concentrations of 70, 80 and 90 %. Polymeric films were prepared by solvent slow evaporation at low temperatures. XRD measurements revealed that Galactomannan from Adenanthera pavonina L., after purification, has a semi-crystalline structure due to the identification of two peaks the first between 5.849° and 6.118° and the second between 20.011° and 20.247°. FTIR spectra showed the functional groups associated with monosaccharides of the galactomannan from Adenanthera pavonina L. seeds, as well as the typical polysaccharide bands and peaks, confirmed by literature data. The impedance results give an increment on the state-of-the-art of this biomaterial by showing the existence of dielectric relaxations, independent of the degree of purification, using the dielectric modulus formalism. The permittivity analysis reveals the presence of water in the structure of the film, whose dipoles contribute to the relatively high value of the dielectric constant. From the results obtained, it can be concluded that purified galactomannan has the potential for possible applications in the electronics industry as a green and eco-friendly dielectric material.
为了实现可持续生产,对可生物降解和生物相容材料的探索带来了了解基于多糖的复合结构的物理化学和介电特性的需求,这些复合结构可作为生物技术和电子工业重要且有前景的原材料。半乳甘露聚糖是从种子和微生物来源中提取的多糖,由甘露糖和半乳糖组成。在此背景下,本工作旨在通过XRD、FTIR和阻抗谱对从鸡冠刺桐种子中获得的半乳甘露聚糖进行提取、纯化和表征。纯化过程使用浓度为70%、80%和90%的乙醇进行。通过低温溶剂缓慢蒸发制备聚合物薄膜。XRD测量表明,鸡冠刺桐种子中的半乳甘露聚糖纯化后具有半结晶结构,这是由于识别出两个峰,第一个峰在5.849°至6.118°之间,第二个峰在20.011°至20.247°之间。FTIR光谱显示了与鸡冠刺桐种子半乳甘露聚糖单糖相关的官能团,以及典型的多糖谱带和峰,文献数据证实了这一点。阻抗结果通过使用介电模量形式主义表明存在介电弛豫,从而提高了这种生物材料的技术水平,且与纯化程度无关。介电常数分析揭示了薄膜结构中存在水,其偶极子导致介电常数相对较高。从获得的结果可以得出结论,纯化的半乳甘露聚糖有潜力作为绿色环保的介电材料应用于电子工业。