Mamytbekov Galymzhan Kulamkadyrovich, Danko Igor Vitalyevich, Beksultanov Zhomart Imukhanbetovich, Nurtazin Yernat Rashidovich, Bannych Valentina Ivanovna
Institute of Nuclear Physics, Ibragimov Street 1, 050032 Almaty, Kazakhstan.
ACS Omega. 2024 Sep 30;9(41):42297-42308. doi: 10.1021/acsomega.4c04828. eCollection 2024 Oct 15.
A systematic investigation was conducted to synthesize hybrid composite materials that use synthetic poly--vinylpyrrolidone and natural (agar-agar) macromolecules with plasticizers (PEG-400) and mineral filler shungite by means of electron irradiation. The XRD and SEM data showed that the structure of the resulting hybrid composites is an interpenetrating network with distributed particles of mineral component. It has been established that the mechanical properties of hybrid composites are determined mainly by the structural organization of the interpenetrating polymer network formed under electron irradiation of the initial synthetic and natural polymer mixture in the presence of plasticizers, as well as by the conditions for intercalation of polymer segments into the mineral matrix and vice versa. It has been revealed that the degree of swelling of hybrid composites strongly depends on the concentration of a low-molecular plasticizer in the polymeric interpenetrating network, which easily impregnates into the matrix of shungite. Successfully obtained [PVP-AA-PEG] hydrogels with shungite can be applied in regenerative medicine as wound healing dressings.
进行了一项系统研究,通过电子辐照合成使用合成聚乙烯吡咯烷酮和天然(琼脂)大分子与增塑剂(PEG - 400)以及矿物填料水云母的杂化复合材料。XRD和SEM数据表明,所得杂化复合材料的结构是一种具有矿物成分分布颗粒的互穿网络。已经确定,杂化复合材料的机械性能主要由在增塑剂存在下对初始合成聚合物和天然聚合物混合物进行电子辐照时形成的互穿聚合物网络的结构组织决定,以及由聚合物链段插入矿物基质和反之亦然的插层条件决定。已经发现,杂化复合材料的溶胀程度强烈取决于聚合物互穿网络中低分子增塑剂的浓度,该增塑剂很容易浸渍到水云母基质中。成功获得的含水云母的[PVP - AA - PEG]水凝胶可作为伤口愈合敷料应用于再生医学。