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Layered double hydroxide/sepiolite hybrid nanoarchitectures for the controlled release of herbicides

机译:层状双氢氧化物/海泡石混合纳米结构用于除草剂的控释

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摘要

In this work, organic–inorganic hybrid nanoarchitectures were prepared in a single coprecipitation step by assembling magnesium–aluminum layered double hydroxides (MgAl-LDH) and a sepiolite fibrous clay, with the simultaneous encapsulation of the herbicide 2-methyl-4-chlorophenoxyacetic acid (MCPA) as the MgAl-LDH retains its ion exchange properties. The synthetic procedure was advantageous in comparison to the incorporation of MCPA by ion exchange after the formation of the LDH/sepiolite nanoarchitecture in a previous step, as it was less time consuming and gave rise to a higher loading of MCPA. The resulting MCPA-LDH/sepiolite nanoarchitectures were characterized by various physicochemical techniques (XRD, FTIR and 29Si NMR spectroscopies, CHN analysis and SEM) that revealed interactions of LDH with the sepiolite fibers through the silanol groups present on the outer surface of sepiolite, together with the intercalation of MCPA in the LDH confirmed by the increase in the basal spacing from 0.77 nm for the pristine LDH to 2.32 nm for the prepared materials. The amount of herbicide incorporated in the hybrid nanoarchitectures prepared by the single-step coprecipitation method surpassed the CEC of LDH (ca. 330 mEq/100 g), with values reaching 445 mEq/100 g LDH for certain compositions. This suggests a synergy between the inorganic solids that allows the nanoarchitecture to exhibit better adsorption properties than the separate components. Additionally, in the release assays, the herbicide incorporated in the hybrid nanoarchitectures could be completely released, which confirms its suitability for agricultural applications. In order to achieve a more controlled release of the herbicide and to act for several days on the surface of the soil, the hybrid nanoarchitectures were encapsulated in a biopolymer matrix of alginate/zein and shaped into spheres. In in vitro tests carried out in bidistilled water, a continuous release of MCPA from the bionanocomposite beads was achieved for more than a week, while the non-encapsulated materials released the 100% of MCPA in 48 h. Besides, the encapsulation may allow for better handling and transport of the herbicide.
机译:在这项工作中,有机-无机杂化纳米结构是在单个共沉淀步骤中制备的,方法是将镁铝层状双氢氧化物(MgAl-LDH)和海泡石纤维粘土组装在一起,同时包封除草剂2-甲基-4-氯苯氧基乙酸(MCPA),因为MgAl-LDH保留了其离子交换特性。与在先前步骤中在LDH /海泡石纳米结构形成之后通过离子交换引入MCPA相比,该合成方法是有利的,因为它消耗更少的时间并且引起更高的MCPA负载。通过各种物理化学技术(XRD,FTIR和 29 Si NMR光谱,CHN分析和SEM)对所得的MCPA-LDH /海泡石纳米结构进行了表征,揭示了LDH与海泡石纤维通过存在的硅烷醇基相互作用在海泡石的外表面上,以及在LDH中的MCPA嵌入,通过从原始LDH的0.77 nm到制备材料的2.32 nm的基础间距的增加证实了。通过单步共沉淀法制备的混合纳米结构中除草剂的含量超过了LDH的CEC(约330 mEq / 100 g),对于某些组合物,其值达到445 mEq / 100 g LDH。这表明无机固体之间的协同作用,使纳米结构比单独的组分表现出更好的吸附性能。另外,在释放试验中,掺入杂化纳米体系结构中的除草剂可以完全释放,这证实了其在农业上的适用性。为了实现除草剂的更受控释放并在土壤表面上作用数天,将杂化纳米体系结构封装在藻酸盐/玉米醇溶蛋白的生物聚合物基质中,并制成球形。在双蒸馏水中进行的体外测试中,从仿生纳米复合珠中连续释放MCPA超过一周,而未包封的材料在48小时内释放了100%的MCPA。此外,包封可以允许除草剂的更好的处理和运输。

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