Karpov Sergei V, Dzhalmukhanova Aigul S, Kurbatov Vladimir G, Perepelitsina Eugenia O, Tarasov Alexander E, Badamshina Elmira R
Department of Polymers and Composite Materials, Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry, Russian Academy of Sciences, Academician Semenov Avenue 1, Chernogolovka 142432, Russia.
Department of Chemical Technology of Organic Coatings, Yaroslavl State Technical University, Moscow Avenue 88, Yaroslavl 150023, Russia.
Polymers (Basel). 2022 Dec 2;14(23):5262. doi: 10.3390/polym14235262.
Eco-friendly waterborne polyurethanes (WPU) find wide application in agriculture as pesticide carriers, which enhances their efficiency. To provide better control of the retention time and capacity of pesticides, WPU can be modified by cyclodextrin derivatives able to form supramolecular assemblies with bioactive substances. Synthesis of WPU containing up to 15 wt.% of covalently bound β-cyclodextrin partial nitrate (CDPN) is reported in this work. Covalent bonding of CDPN to a polyurethane matrix has been proved by IR spectroscopy and size exclusion chromatography. The particle size and viscosity of the WPU dispersion have been determined. The introduction of CDPN affects molecular weight and thermal properties of WPU films. The presence of CDPN in WPU is shown to provide higher average molecular weight, wider molecular weight distribution, and larger average size of dispersed particles, compared with WPU reference samples containing 1,4-butanediol. The analysis of the rheological behavior of the obtained WPU dispersions shows that they can be classified as pseudoplastic liquids. The analysis of the thermal parameters of WPU films indicates that the introduction of 15.0 wt.% CDPN shifts the value of the glass transition temperature from -63 °C to -48 °C compared with reference samples. We believe that the results of the present study are sufficiently encouraging in terms of using CDPN-modified eco-friendly WPU as potential systems for developing the delivering agents of bioactive compounds. The application of such systems will allow the long-term contact of pesticides with the plant surface and minimize the possibility of their release into the environment.
环保型水性聚氨酯(WPU)作为农药载体在农业中有着广泛应用,这提高了农药的效率。为了更好地控制农药的保留时间和容量,WPU可以用能够与生物活性物质形成超分子组装体的环糊精衍生物进行改性。本文报道了含有高达15 wt.%共价结合的β-环糊精偏硝酸盐(CDPN)的WPU的合成。通过红外光谱和尺寸排阻色谱法证明了CDPN与聚氨酯基体的共价键合。测定了WPU分散体的粒径和粘度。CDPN的引入影响了WPU薄膜的分子量和热性能。与含有1,4-丁二醇的WPU参考样品相比,WPU中CDPN的存在提供了更高的平均分子量、更宽的分子量分布和更大的分散颗粒平均尺寸。对所得WPU分散体的流变行为分析表明,它们可归类为假塑性液体。对WPU薄膜热参数的分析表明,与参考样品相比,引入15.0 wt.%的CDPN使玻璃化转变温度值从-63°C变为-48°C。我们认为,就使用CDPN改性的环保型WPU作为开发生物活性化合物递送剂的潜在体系而言,本研究的结果足以令人鼓舞。此类体系的应用将使农药与植物表面长期接触,并最大限度地减少其释放到环境中的可能性。