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Cyclodextrin Inclusion Complex to Improve Physicochemical Properties of Herbicide Bentazon: Exploring Better Formulations

机译:环糊精包合物提高除草剂苯达松的物化性质:探索更好的配方

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摘要

The knowledge of the host-guest complexes using cyclodextrins (CDs) has prompted an increase in the development of new formulations. The capacity of these organic host structures of including guest within their hydrophobic cavities, improves physicochemical properties of the guest. In the case of pesticides, several inclusion complexes with cyclodextrins have been reported. However, in order to explore rationally new pesticide formulations, it is essential to know the effect of cyclodextrins on the properties of guest molecules.In this study, the inclusion complexes of bentazon (Btz) with native βCD and two derivatives, 2-hydroxypropyl-β-cyclodextrin (HPCD) and sulfobutylether-β-cyclodextrin (SBECD), were prepared by two methods: kneading and freeze-drying, and their characterization was investigated with different analytical techniques including Fourier transform infrared spectroscopy (FT-IR), differential thermal analysis (DTA), X-ray diffractometry (XRD) and differential pulse voltammetry (DPV). All these approaches indicate that Btz forms inclusion complexes with CDs in solution and in solid state, with a stoichiometry of 1∶1, although some of them are obtained in mixtures with free Btz. The calculated association constant of the Btz/HPCD complex by DPV was 244±19 M−1 being an intermediate value compared with those obtained with βCD and SBECD. The use of CDs significantly increases Btz photostability, and depending on the CDs, decreases the surface tension. The results indicated that bentazon forms inclusion complexes with CDs showing improved physicochemical properties compared to free bentazon indicating that CDs may serve as excipient in herbicide formulations.
机译:使用环糊精(CD)的宿主-客体复合物的知识已促使开发新制剂。这些有机主体结构在其疏水腔内包含客体的能力提高了客体的物理化学性质。对于农药,已经报道了几种与环糊精的包合物。然而,为了合理地探索新的农药配方,必须了解环糊精对客体分子特性的影响。在这项研究中,苯达松(Btz)与天然βCD和两种衍生物2-羟丙基- β-环糊精(HPCD)和磺丁基醚-β-环糊精(SBECD)通过捏合和冷冻干燥两种方法制备,并通过傅里叶变换红外光谱(FT-IR),差示热分析等不同分析技术对其进行了表征。分析(DTA),X射线衍射(XRD)和差分脉冲伏安(DPV)。所有这些方法都表明,Btz与溶液中和固态的CD形成包合物,化学计量比为1∶1,尽管其中一些是与游离Btz的混合物获得的。通过DPV计算得出的Btz / HPCD配合物的缔合常数为244±19 M -1 ,与用βCD和SBECD所获得的缔合常数相比是一个中间值。 CD的使用显着提高了Btz的光稳定性,并且取决于CD,降低了表面张力。结果表明,与游离苯达松相比,苯达松与CD形成包合物,与游离苯达松相比具有改善的理化性质,表明CD可以作为除草剂配方中的赋形剂。

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