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'Sweet' ionic liquids comprising the acesulfame anion - synthesis, physicochemical properties and antifeedant activity towards stored product insects

机译:“甜味”离子液体,包括乙酰氟阴离子 - 合成,物理化学性质和抗透过储存产品昆虫的活性

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摘要

Ionic liquids (ILs) are known to be useful as agrochemicals; however, their activity strongly depends on the structure of the selected cations and anions. This study is focused on the utilization of acesulfame K, a sweetener commonly used in the food industry, in the synthesis of ILs, their characterization and their application as feeding deterrents (antifeedants) against stored product insects. A new homologous series of "sweet" ILs containing cations functionalized with a diglycol [2-(2-hydroxyethoxy)ethyl] group and an acesulfame anion were obtained with high yields under mild conditions via a two-step process. Subsequently, the influence of the length of the alkyl chain (ranging from ethyl to hexadecyl) in the cations of the functionalized ILs on their various physicochemical properties (phase transitions, thermal stability, density, viscosity, refractive index, solubility and octanol-water partition coefficient) was thoroughly evaluated. The octanol-water partition coefficient values indicate low potential of the obtained products for bioaccumulation in the environment and for leaching into groundwater. Additionally, the synthesized ILs were examined in terms of their antifeedant activity towards widespread stored product pests: the granary weevil, rice weevil, confused flour beetle and khapra beetle. All the obtained ILs exhibited biological activity, and the highest efficacy against tested insects was demonstrated by products comprising long alkyls (tetradecyl and hexadecyl). Additionally, it was established that these ILs were also characterized by the highest octanol-water partition coefficient values. The obtained "sweet" ILs with "designer" physicochemical properties and promising biological activity results exhibit potential for use in the storage of crop protection products.
机译:已知离子液体(ILS)可用作农用化学品;然而,他们的活动强烈取决于所选阳离子和阴离子的结构。该研究专注于利用aceSulfame k,常用于食品工业中的甜味剂,在ILS的合成中,其表征及其应用作为喂养威慑物(抗蒸发剂)对储存的产品昆虫。通过两步法在温和的条件下,在温和条件下,在温和条件下,在温和的条件下,在温和的条件下获得新的同源系列的“甜味”ILS的含有官能化的阳离子。随后,烷基链长度(范围从乙基乙基乙基乙基乙基乙基)的影响在其各种物理化学性质(相转变,热稳定性,密度,粘度,折射率,溶解度和辛醇 - 水分配)上的阳离子上的影响系数彻底评估。辛醇 - 水分配系数值表示所得产品的低电位,用于环境中的生物累积和浸出到地下水中。另外,在其抗透过储存产品害虫的抗透镜活动方面检查了合成的ILS:粮仓象鼻虫,水稻象鼻虫,困惑的面粉甲虫和Khapra Beetle。所有获得的ILS都表现出生物活性,并且通过包含长烷基(四癸基和十六烷基)的产品证明了对测试昆虫的最高效果。另外,建立这些ILS的特征在于最高的辛醇 - 水分配系数值。通过“设计者”物理化学性质和有前途的生物活性结果所获得的“甜味”ILS表现出用于储存作物保护产品的潜力。

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  • 来源
    《New Journal of Chemistry》 |2020年第17期|共12页
  • 作者单位

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

    Natl Res Inst Inst Plant Protect Wegorka 20 PL-60318 Poznan Poland;

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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