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Preparation of the Hybrids of Hydrotalcites and Chitosan by Urea Method and Their Antimicrobial Activities

机译:尿素法及抗菌活性制备水滑石和壳聚糖的杂交种及其抗微生物活性

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摘要

Hybrid nano-supra molecular structured materials can boost the functionality of nano- or supra-molecular materials by providing increased reactivity and conductivity, or by simply improving their mechanical stability. Herein, the studies in materials science exploring hybrid systems are investigated from the perspective of two important related applications: healthcare and food safety. Interfacing phase strategy was applied, and ZnAl layered double hydroxide-chitosan hybrids, prepared by the urea method (U-LDH/CS), were successfully synthesized under the conditions of different chitosan(CS) concentrations with a Zn/Al molar ratio of 5.0. The structure and surface properties of the U-LDH/CS hybrids were characterized by X-ray diffraction (XRD), Fourier-transform infrared spectrometer(FTIR), scanning electronmicroscopy (SEM), ultravioletvisible (UV-Vis), and zero point charge (ZPC) techniques, where the effect of CS concentration on the structure and surface properties was investigated. The use of the U-LDH/CS hybrids as antimicrobial agents against Escherichia coli, Staphylococcus aureus, and Penicillium cyclopium was investigated in order to clarify the relationship between microstructure and antimicrobial ability. The hybrid prepared in a CS concentration of 1.0 g∙L−1 (U-LDH/CS1) exhibited the best antimicrobial activity and exhibited average inhibition zones of 24.2, 30.4, and 22.3mm against Escherichia coli, Staphylococcus aureus, and Penicillium cyclopium, respectively. The results showed that the appropriate addition of CS molecules could increase antimicrobial ability against microorganisms.
机译:杂交纳米同上通过提供增加的反应性和电导率,或通过简单地提高其机械稳定性来提高纳米或同上分子材料的功能。这里,从两个重要相关申请的角度研究了材料科学探索混合动力系统的研究:医疗保健和食品安全。应用接口相策略,通过脲法(U-LDH / CS)制备的ZnAl分层双氢氧化物 - 壳聚糖杂交物在不同的壳聚糖(Cs)浓度的条件下成功地合成,Zn / Al摩尔比为5.0 。 U-LDH / CS杂种的结构和表面性质的特征在于X射线衍射(XRD),傅立叶变换红外光谱仪(FTIR),扫描电子镜(SEM),紫外线(UV-VI)和零点电荷(ZPC)技术研究了CS浓度对结构和表面性质的影响。研究了U-LDH / CS杂交物作为针对大肠杆菌,金黄色葡萄球菌和青霉环钙的抗微生物剂,以阐明微观结构和抗微生物能力之间的关系。在CS浓度为1.0g = L-1(U-LDH / CS1)中制备的杂交物表现出最佳的抗微生物活性,并表现出24.2,30.4和22.3mm的平均抑制区,其对大肠杆菌,金黄色葡萄球菌和青霉氢钙,分别。结果表明,CS分子的适当添加可以增加针对微生物的抗微生物能力。

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