Kociołek-Balawejder Elżbieta, Stanisławska Ewa, Mucha Igor, Ociński Daniel, Jacukowicz-Sobala Irena
Department of Chemical Technology, Wroclaw University of Economics and Business, 53-345 Wrocław, Poland.
Department of Basic Chemical Sciences, Wroclaw Medical University, 50-556 Wrocław, Poland.
Polymers (Basel). 2023 Aug 30;15(17):3606. doi: 10.3390/polym15173606.
As copper and its compounds are of fundamental importance for the development of innovative materials, the synthesis of composites intended for water purification was undertaken in which submicron copper containing particles were dispersed within the matrix of a strongly basic anion exchanger, with a macroporous and gel-like structure. Due to their trimethylammonium functional groups, the host materials alone exhibited an affinity to anionic water contaminants and antimicrobial properties. The introduction of such particles as CuO, CuO, metallic Cu, CuO/FeO(OH), CuO, Cu(OH), Cu(OH)SO, Cu(OH)Cl increased these properties and demonstrated new properties. The composites were obtained unconventionally, in ambient conditions, using eco-friendly reagents. Alternative synthesis methods were compared and optimized, as a result of which a new group of hybrid ion exchangers was created (HIXs) containing 3.5-12.5 wt% of Cu. As the arrangement of the inorganic phase in the resin matrix was atypical, i.e., close to the surface of the beads, the obtained HIXs exhibited excellent kinetic properties in the process of oxidation and adsorption of As(III), as well as catalytic properties for the synthesis of triazoles via click reaction, and also antimicrobial properties in relation to Gram-positive and Gram-negative and , preventing biofilm formation. Using thermogravimetry, the effect of the inorganic phase on decomposition of the polymeric phase was evaluated for the first time and comprehensively, confirming the relationship and finding numerous regularities. It was also found that, depending on the oxidation state (CuO, CuO, Cu), copper-containing particles affected the textural properties of the polymeric phase endowing a tighter structure, limiting the porosity and reducing the affinity for water.
由于铜及其化合物对于创新材料的开发至关重要,因此开展了用于水净化的复合材料的合成研究,其中含亚微米铜的颗粒分散在具有大孔和凝胶状结构的强碱性阴离子交换剂基质中。由于其三甲铵官能团,主体材料本身就对阴离子水污染物表现出亲和力并具有抗菌性能。引入诸如CuO、CuO、金属铜、CuO/FeO(OH)、CuO、Cu(OH)、Cu(OH)SO、Cu(OH)Cl等颗粒增强了这些性能并展现出了新的性能。这些复合材料是在环境条件下使用环保试剂以非常规方式获得的。对替代合成方法进行了比较和优化,结果创建了一组新的混合离子交换剂(HIXs),其含3.5 - 12.5 wt%的铜。由于无机相在树脂基质中的排列是非典型的,即靠近珠粒表面,所获得的HIXs在As(III)的氧化和吸附过程中表现出优异的动力学性能,以及通过点击反应合成三唑的催化性能,并且对革兰氏阳性菌和革兰氏阴性菌具有抗菌性能,可防止生物膜形成。首次全面地使用热重分析法评估了无机相对聚合物相分解的影响,证实了这种关系并发现了许多规律。还发现,取决于氧化态(CuO、CuO、Cu),含铜颗粒会影响聚合物相的织构性能,赋予其更紧密的结构,限制孔隙率并降低对水的亲和力。