Institute for Nanomaterials, Advanced Technologies and Innovation (C×I), Technical University of Liberec (TUL), Studentská 1402/2, Liberec 1 461 17, Czech Republic.
Institute for Nanomaterials, Advanced Technologies and Innovation (C×I), Technical University of Liberec (TUL), Studentská 1402/2, Liberec 1 461 17, Czech Republic.
Int J Biol Macromol. 2021 Apr 30;177:526-534. doi: 10.1016/j.ijbiomac.2021.02.156. Epub 2021 Feb 23.
The assembly of bio-based macromolecules of gum kondagogu/sodium alginate (KO/SA) was fabricated using glycerol as a plasticiser and their optimum blending ratio was identified based on their physical and chemical, structural, mechanical, barrier, and morphological properties. The attenuated total reflection-Fourier transform infrared spectroscopy (ATR-FTIR) analysis show that both biomacromolecules are well organised due to the hydrogen bond interaction between molecular chains involving the hydroxyl, carbonyl, and acetyl groups. Structural identification was performed by recording X-ray diffraction (XRD) spectra. Field emission scanning electron microscopy (FESEM) was used to identify the distinction between the surface of the films of biopolymers, and their conjugates, where the addition of SA increased the surface homogeneity and smoothness. The water contact angle of the blend films reached up to 81°, although the value for pure biomacromolecule films was very low. The blend films also exhibited high tensile strength (up to 24 MPa) compared to the pure biopolymer films. Investigation of film-forming ability, mechanical strength, permeability, transparency, and biodegradability of the developed KO/SA bio-macromolecular association may be established as green and sustainable food packaging films.
使用甘油作为增塑剂,制备了基于树胶 Kondagogu/海藻酸钠(KO/SA)的生物大分子组装体,并根据其物理化学、结构、机械、阻隔和形态特性确定了最佳共混比。衰减全反射-傅里叶变换红外光谱(ATR-FTIR)分析表明,两种生物大分子都由于涉及羟基、羰基和乙酰基的分子链之间的氢键相互作用而得到很好的组织。结构鉴定是通过记录 X 射线衍射(XRD)光谱来进行的。场发射扫描电子显微镜(FESEM)用于识别生物聚合物及其缀合物的表面区别,其中添加 SA 增加了表面的均匀性和平滑度。共混膜的水接触角可达 81°,尽管纯生物大分子膜的水接触角非常低。与纯生物聚合物膜相比,共混膜还表现出更高的拉伸强度(高达 24 MPa)。研究开发的 KO/SA 生物大分子缔合物的成膜能力、机械强度、渗透性、透明度和生物降解性,可以作为绿色和可持续的食品包装薄膜。