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Rational design and electrical study of conducting bionanocomposites hydrogel based on chitosan and silver nanoparticles

机译:基于壳聚糖和银纳米粒子进行脱硫复合物水凝胶的合理设计与电气研究

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The chitosan/polyacrylic acid/polypyrrole/loaded with silver nanoparticles (CS/PAA/PPy/Ag-NPs) bionanocomposite as conductive, biodegradable, and biocompatible hydrogels were prepared by the casting method. Silver nanoparticles (Ag-NPs) were incorporated into the prepared bionanocomposite hydrogels to reinforce the electrical conductivity as well as the antimicrobial properties of the prepared hydrogels. The scanning electron microscopy revealed the compatibility of chitosan, polyacrylic acid, and polypyrrole, as well as Ag-NPs, were inserted in the polymer matrix and dispersed well on the superficies of the prepared bionanocomposites. X-ray diffraction displayed the presence of Ag-NPs into the polymer matrix. Also, the appearance of characteristic peaks in the Fourier transform infrared confirmed the compatibility of three polymers. Additionally, the swelling properties, antimicrobial activity as well as the electrical and dielectric characteristics of the fabricated bionanocomposites hydrogels were investigated. Moreover, the DC-conductivity was studied and our data designated that the DC-conductivity of the prepared bio-nanocomposites was improved by the existence of PPy more precisely than that of Ag-NPs. However, both were of high conductivity compared to that of the CS/PAA and found to follow the BNN universal relation. Also, The activation energy of about 55 kJ/mol of CS:2PAA hydrogel and reduce to about 15 kJ/mol in all the considered bionanocomposites after addition of Ag-NPs. Furthermore, the antibacterial activities of the knowledgeable microbes were improved as a result of the presence of Ag-NPs in bionanocomposites hydrogels. (C) 2019 Elsevier B.V. All rights reserved.
机译:用铸造方法制备壳聚糖/聚丙烯酸/聚吡咯/负载用银纳米颗粒(CS / PAA / PPY / AG-NPS)脱硫复合物作为导电,可生物降解和生物相容性水凝胶。将银纳米颗粒(Ag-NPS)掺入制备的硫代铝复合物水凝胶中,以增强制备的水凝胶的电导率以及抗微生物性质。扫描电子显微镜显示壳聚糖,聚丙烯酸和聚吡咯以及Ag-NPS的相容性,在聚合物基质中插入聚合物基质中,并在制备的脱硫复合物的上海上分散井。 X射线衍射显示在聚合物基质中存在Ag-NP。而且,傅里叶变换红外线中的特征峰的外观证实了三种聚合物的相容性。另外,研究了溶胀性质,抗微生物活性以及制造的脱硫复合物水凝胶的电和介电特性。此外,研究了DC导电性,并且我们指定的数据指定通过比Ag-NPS更精确地的存在,改善了制备的生物纳米复合材料的DC导电性。然而,与CS / PAA相比,两者都具有高导电性,并发现遵循BNN普遍关系。此外,在加入Ag-NPS后,在所有被认为的脱硫复合物中,约55kJ / mol CS:2Paa水凝胶的活化能量为约55kJ / mol Cs:2Paa水凝胶并在约15kJ / mol。此外,由于BionAnochosites水凝胶中的Ag-NPS存在,改善了知识渊博的微生物的抗菌活性。 (c)2019 Elsevier B.v.保留所有权利。

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