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分析标准品,HPLC≥98%

(E)-imidacloprid

源叶
B25563 一键复制产品信息
138261-41-3
C9H10ClN5O2
255.66
MFCD00468059
1-((6-chloropyridin-3-yl)methyl)-3-nitroimidazolidin-2-imine
货号 规格 价格 上海 北京 珠海 武汉 购买数量
B25563-100mg
分析标准品,HPLC≥98%

¥310.00

>10 2 - 6
B25563-500mg
分析标准品,HPLC≥98%

¥1200.00

>10 - - -
产品介绍 参考文献(46篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

 Imidacloprid 是一种有效且广泛使用的新烟碱类农药,用于控制谷物,蔬菜,茶叶和棉花的害虫。

熔点: 140-146 °C
沸点: 442.3±55.0 °C at 760 mmHg
外观: 无色结晶
溶解性: DMSO  :  ≥  100  mg/mL  (391.14  mM)

H2O  :  0.1  mg/mL  (3.91  mM;  ultrasonic  and  warming  and  heat  to  60°C)
敏感性: 对光敏感
储存条件: 2-8℃
注意: 部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。

参考文献(46篇)

41. [IF=12.5] Jia-wei Ding et al."Bi-directional pH-responsive cellulose nanocrystals-based pesticide microcapsules for sustainable agriculture."CARBOHYDRATE POLYMERS.2025 Nov;368:124242 40. [IF=4] Yinchen Wang et al."Varroa destructor infestation amplifies imidacloprid vulnerability in Apis mellifera."PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY.2025 Nov;214:106616 39. [IF=12.5] Jia-wei Ding et al."Bi-directional pH-responsive cellulose nanocrystals-based pesticide microcapsules for sustainable agriculture."CARBOHYDRATE POLYMERS.2025 Nov;368:124242 38. [IF=5.1] Zhenchao Li et al."Biofuel cell assembled by Cu2O nanocube laccase-mimicking nanozyme based sensitive self-powered sensor to detect fungicide thiophanate-methyl."MICROCHEMICAL JOURNAL.2025 Sep;216:114676 37. [IF=7.3] Jiaying Wu et al."High-throughput neurotoxicity study of neonicotinoids in C. elegans: Oxidative stress and serotonergic neuronal damage as key mechanisms."ENVIRONMENTAL POLLUTION.2025 Oct;383:126814 36. [IF=4.4] Kaihui Zhu et al."Sublethal concentrations of imidacloprid cross generational inhibit the reproductive capacity, feeding efficiency, and immune function of Therioaphis trifolii (Monell)."Journal of Integrative Agriculture.2025 Jun;: 35. [IF=5.4] Xiuqin Chen et al."Development of a Dual-Shelled pH-Responsive Polymer-MOF Nanocarrier for Sustained Imidacloprid Delivery and Enhanced Control of Megoura crassicauda."COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS.2025 Jun;:137410 34. [IF=6.2] Jing Yang et al."m6A-Mediated Regulation of CYP417B1 Contributes to Imidacloprid Resistance in Bemisia tabaci."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2025;73(27):16766–16777 33. [IF=11.3] Yujing Tang et al."Hepatotoxicity of imidacloprid in zebrafish and the alleviating role of 10-hydroxy-2-decenoi acid: Insights into oxidative stress, inflammation, and gut microbiota."JOURNAL OF HAZARDOUS MATERIALS.2025 Aug;494:138695 32. [IF=6.7] Zhihua Song et al."Design and Synthesis of Fluorine-Containing Embedded Carbon Dots Stationary Phase for Separation of Versatile Analytes."ANALYTICAL CHEMISTRY.2024;XXXX(XXX):XXX-XXX 31. [IF=0] Huang Yuan et al."Contamination profile and hazards of neonicotinoid insecticides in honey from apiaries in Beijing, China."ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH.2024 Oct;:1-12 30. [IF=5.3] Wang Linhai et al."Visual aptasensor based on PtNPs/g-C3N4 and DNase I for the field detection of acetamiprid."MICROCHIMICA ACTA.2024 Dec;191(12):1-10 29. [IF=8.5] Qianqian Lu et al."Production of a monoclonal antibody against thiacloprid, resistant to matrix interference, and its application in quantitatively immunochromatographic assay."FOOD CHEMISTRY.2024 Nov;:142172 28. [IF=7.7] Xijie Li et al."Early life imidacloprid and copper exposure affects the gut microbiome, metabolism, and learning ability of honey bees (Apis mellifera)."ENVIRONMENTAL RESEARCH.2025 May;273:121134 27. [IF=8.9] Petrus Siregar et al."Toxicity evaluation of neonicotinoids to earthworm (Eisenia fetida) behaviors by a novel locomotion tracking assay."ENVIRONMENTAL POLLUTION".2024 Jun;351:124111 26. [IF=4.8] Wei Sheng et al."Colorimetric and photothermal double-model immunochromatographic assay based on MoS2@Au nanocomposite for high sensitive detection of imidacloprid in food."MICROCHEMICAL JOURNAL".2024 Jun;201:110637 25. [IF=13.6] Yao-Peng Lu et al."Integration of transcriptome, gut microbiota, and physiology reveals toxic responses of the red claw crayfish (Cherax quadricarinatus) to imidacloprid."JOURNAL OF HAZARDOUS MATERIALS".2024 May;470:134293 24. [IF=4.5] Cheng Yin et al."Dual mutations in the whitefly nicotinic acetylcholine receptor β1 subunit confer target-site resistance to multiple neonicotinoid insecticides."PLoS Genetics".2024 Feb;20(2):e1011163 23. [IF=8.1] Ning Yue et al."Imidacloprid triggered changes in strawberry fruits on edible quality and phenolic profiles by applied at two growth stages."FOOD RESEARCH INTERNATIONAL.2024 Mar;179:114031 22. [IF=13.6] Hui Xie et al."A H2O2-specific fluorescent probe for evaluating oxidative stress in pesticides-treated cells, rice roots and zebrafish."JOURNAL OF HAZARDOUS MATERIALS.2024 Mar;465:133426 21. [IF=13.6] Jia-Bao Ni et al."Efficient degradation of imidacloprid by surface discharge cold plasma: Mechanism of interaction between ROS and molecular structure and evaluation of residual toxicity."JOURNAL OF HAZARDOUS MATERIALS.2024 Mar;465:133066 20. [IF=5.8] Wang Yuankai et al."Changes in toxicity after mixing imidacloprid and cadmium: enhanced, diminished, or both? From a perspective of oxidative stress, lipid metabolism, and amino acid metabolism in mice."ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH.2023 Oct 19. [IF=4.7] Huanyi Liu et al."Co-exposure of avermectin and imidacloprid induces DNA damage, pyroptosis, and immune dysfunction in epithelioma papulosum cyprini cells via ROS-mediated Keap1/Nrf2/TXNIP axis."FISH & SHELLFISH IMMUNOLOGY.2023 Aug;:108985 18. [IF=4.2] Pengjuan Ni et al."A Turn-On Fluorescent Assay for Glyphosate Determination Based on Polydopamine-Polyethyleneimine Copolymer via the Inner Filter Effect."Chemosensors.2023 Jul;11(7):398 17. [IF=4.421] Xiang Li et al."Development of an efficient insecticide substrate and inhibitor screening system of insect P450s using fission yeast."INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY.2023 May;:103958 16. [IF=4.462] Shaonan Liu et al."20E biosynthesis gene CYP306A1 confers resistance to imidacloprid in the nymph stage of Bemisia tabaci by detoxification metabolism."PEST MANAGEMENT SCIENCE.2023 May;: 15. [IF=4.966] Xuegao Wei et al."Cytochrome P450 CYP6DB3 was involved in thiamethoxam and imidacloprid resistance in Bemisia tabaci Q (Hemiptera: Aleyrodidae)."PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY.2023 Aug;194:105468 14. [IF=4.966] Pei-Pan Gong et al."Novel_miR-1517 mediates CYP6CM1 to regulate imidacloprid resistance in Bemisia tabaci (Hemiptera: Gennadius)."PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY.2023 Aug;194:105469 13. [IF=5.895] Cheng Yin et al."Knockdown of the Nicotinic Acetylcholine Receptor β1 Subunit Decreases the Susceptibility to Five Neonicotinoid Insecticides in Whitefly (Bemisia tabaci)."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX 12. [IF=4.036] Sunfan Xi et al."Developing a DNA logic gate nanosensing platform for the detection of acetamiprid."RSC Advances.2022 Sep;12(42):27421-27430 11. [IF=7.514] Hui Zhangsun et al."NiCu nanoalloy embedded in N-doped porous carbon composite as superior electrochemical sensor for neonicotinoid determination."Food Chem. 2022 Aug;384:132607 10. [IF=3.228] Ting Luo et al."Combined hepatotoxicity of imidacloprid and microplastics in adult zebrafish: Endpoints at gene transcription."Comp Biochem Phys C. 2021 Aug;246:109043 9. [IF=7.46] Qinzhi Wang et al."Semi-sacrificial template growth-assisted self-supporting MOF chip: A versatile and high-performance SERS sensor for food contaminants monitoring."Sensor Actuat B-Chem. 2022 Feb;352:131025 8. [IF=7.514] Fei Qu et al."Dual lanthanide-probe based on coordination polymer networks for ratiometric detection of glyphosate in food samples."Food Chem. 2020 Sep;323:126815 7. [IF=10.588] Qinzhi Wang et al."Macro-meso-microporous carbon composite derived from hydrophilic metal-organic framework as high-performance electrochemical sensor for neonicotinoid determination."J Hazard Mater. 2021 Jun;411:125122 6. [IF=10.588] Lingyu Li et al."AuNPs/NiFe-LDHs-assisted laser desorption/ionization mass spectrometry for efficient analysis of metronidazole and its metabolites in water samples."J Hazard Mater. 2022 Feb;423:126893 5. Qu, Fei, Han Wang, and Jinmao You. "Dual lanthanide-probe based on coordination polymer networks for ratiometric detection of glyphosate in food samples." Food chemistry 323 (2020): 126815.https://doi.org/10.1016/j.foodchem.2020.126815 4. 缑珍珍. 应用饲喂法RNAi筛选豌豆蚜致死基因的研究[D].西北农林科技大学,2020. 3. 慕莉莉,高歌.月季长管蚜在马铃薯苗上的种群变化及杀虫剂室内毒力测定[J].现代农业科技,2020(17):90-91. 2. 肖苏萍, 钟荣荣, 高慧,等. 超高效液相色谱-串联质谱法快速测定不同石斛中8种农药残留量[J]. 中国现代中药, 2020, v.22(04):135-140+153. 1. 赵鹏程, 李焱, 闫文静,等. 新疆棉蚜不同地理种群对杀虫剂的敏感性[J]. 石河子大学学报(自科版), 2018, 036(002):159-163.

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