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为了发现高效、低毒的农药先导化合物,以真菌几丁质为研究对象,以取代苯甲酸、5-取代苯基-2-呋喃甲醇为起始原料,设计合成了23个新型取代苯甲酰胺基硫代甲酸-(5-取代苯基-2-呋喃)-甲酯,其结构经IR,1H NMR和元素分析确证.初步生测结果表明,在50 μg/mL浓度下,化合物对黄瓜褐斑菌、黄瓜灰霉菌、黄瓜枯萎菌表现出明显的防效,尤其对于黄瓜灰霉菌,大部分化合物的防效优于对照药剂40%菌核净WP.  相似文献   
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We present a novel dispersive liquid–liquid microextraction method based on the solidification of deep eutectic solvent coupled with high‐performance liquid chromatography with a variable‐wavelength detection for the detection of five benzoylureas in real water samples. In this work, a green solvent consisting of 1‐octyl‐3‐methylimidazolium chloride and 1‐dodecanol was used as an extraction solvent, yielding the advantages of material stability, low density, and a suitable freezing point near room temperature. Parameters that significantly affect extraction efficiency were optimized by the one‐factor‐at‐a‐time approach. Under optimal conditions, the recoveries of five target compounds were obtained ranging from 87.39 to 98.05% with correlation coefficients ranging from 0.9994 to 0.9997 for pure water. The limits of detection were in the range of 0.09–0.16 μg/L. The enrichment factors were in the range of 171–188. Linearities were achieved in the range of 0.5–500 μg/L. The proposed method was successfully applied to determine benzoylureas in environmental water samples with a satisfactory recovery of approximately 81.38–97.67%.  相似文献   
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