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Cyanazine Solution in Methanol - 100μg/mL in Methanol,Uncertainty:3%, high purity , CAS No.21725-46-2
Basic Description
| Synonyms |
CYANAZINE | 21725-46-2 | Bladex | Fortrol | Cyanazin | Payze | Bladex 80WP | Fortol | SD 15418 | WL 19805 | 2-[[4-chloro-6-(ethylamino)-1,3,5-triazin-2-yl]amino]-2-methylpropanenitrile | DW 3418 | W34C4P18WD | DTXSID1023990 | CHEBI:38069 | 2-Chloro-4-(1-cyano-1-methylethylamino)-6-eth |
| Specifications & Purity |
100μg/mL in Methanol,Uncertainty:3% |
| Storage Temp |
Store at -20°C |
| Shipped In |
Ice chest + Ice pads This product requires cold chain shipping. Ground and other economy services are not available. |
Associated Targets(Human)
Associated Targets(non-human)
Mechanisms of Action
| Mechanism of Action |
Action Type |
target ID |
Target Name |
Target Type |
Target Organism |
Binding Site Name |
References |
Names and Identifiers
| Isomeric SMILES |
CCNC1=NC(=NC(=N1)Cl)NC(C)(C)C#N |
| UN Number |
2811 |
| Packing Group |
I |
| Molecular Weight |
240.69 |
| Beilstein |
615509 |
| Reaxy-Rn |
615509 |
| Reaxys-RN_link_address |
https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=615509&ln= |
Certificates(CoA,COO,BSE/TSE and Analysis Chart)
Chemical and Physical Properties
| Flash Point(°C) |
100°C |
| Melt Point(°C) |
167.5-169°C |
| Molecular Weight |
240.690 g/mol |
| XLogP3 |
2.200 |
| Hydrogen Bond Donor Count |
2 |
| Hydrogen Bond Acceptor Count |
6 |
| Rotatable Bond Count |
4 |
| Exact Mass |
240.089 Da |
| Monoisotopic Mass |
240.089 Da |
| Topological Polar Surface Area |
86.500 Ų |
| Heavy Atom Count |
16 |
| Formal Charge |
0 |
| Complexity |
272.000 |
| Isotope Atom Count |
0 |
| Defined Atom Stereocenter Count |
0 |
| Undefined Atom Stereocenter Count |
0 |
| Defined Bond Stereocenter Count |
0 |
| Undefined Bond Stereocenter Count |
0 |
| The total count of all stereochemical bonds |
0 |
| Covalently-Bonded Unit Count |
1 |
Citations of This Product
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1.
Chun Wang, Qianqian Wang, Jintao Yu, Xinmeng Wang, Lijuan Wang, Bin Zhao, Lin Hao, Weihua Liu, Zhi Wang, Hao Chen, Qiuhua Wu.
(2023)
Converting waste expanded polystyrene into higher-value-added hyper-crosslinked porous polymer for rapid and high-efficient adsorption of aflatoxins.
Journal of Cleaner Production,
408
(137102).
|
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2.
Qianqian Wang, Ranxiao Tang, Mingming Xu, Junmin Wang, Shuofeng Li, Weihua Liu, Lin Hao, Shuaihua Zhang, Junhong Zhou, Chun Wang, Qiuhua Wu, Zhi Wang.
(2022)
Sustainable synthesis of hydroxyl-functional porous organic framework as novel adsorbent for effective removal of organic micropollutants from water.
JOURNAL OF ENVIRONMENTAL MANAGEMENT,
321
(115952).
|
|
3.
Wu Lijie, Li Zhanchao, Hu Mingzhu.
(2021)
Dynamic Microwave-Assisted Micelle Extraction Coupled with Cloud Point Preconcentration for the Determination of Triazine Herbicides in Soil.
JOURNAL OF CHROMATOGRAPHIC SCIENCE,
60
(5):
(493-500).
|
|
4.
Qiuhua Wu, Yuhong Song, Qianqian Wang, Weihua Liu, Lin Hao, Zhi Wang, Chun Wang.
(2021)
Combination of magnetic solid-phase extraction and HPLC-UV for simultaneous determination of four phthalate esters in plastic bottled juice.
FOOD CHEMISTRY,
339
(127855).
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5.
Zhifeng Cai, Shulin Pang, Xinru Ma, Li Zhu, Yefan Zhang, Fang Tian, Caifeng Zhang.
(2020)
One-pot green and simple synthesis of polyvinyl pyrrolidone capped for copper nanoclusters for high selectivity sensing of fluazinam.
Micro & Nano Letters,
15
(9):
(606-609).
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6.
Qianqian Wang, Weihua Liu, Lin Hao, Chun Wang, Qiuhua Wu, Zhi Wang.
(2020)
Fabrication of magnetic porous organic framework for effective enrichment and assay of nitroimidazoles in chicken meat.
FOOD CHEMISTRY,
332
(127427).
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7.
Wang Qianqian, Li Gaigai, Wang Chun, Wu Qiuhua, Wang Zhi.
(2020)
Layered porous organic frameworks as a novel adsorbent for the solid phase extraction of chlorophenols prior to their determination by HPLC-DAD.
MICROCHIMICA ACTA,
187
(4):
(1-11).
|
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8.
Zan Li, Jun Jia, Mingwei Wang, Hua Zhang, Hongyuan Yan, Fengxia Qiao.
(2017)
Bifunctionalized ordered mesoporous organosilica synthesized in deep eutectic solvent for extraction of triazine herbicides from watermelon.
JOURNAL OF CHROMATOGRAPHY A,
1529
(50).
|
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9.
Xinpei Li, Ying Sun, Qun Sun, Li Liang, Huilan Piao, Yanxiao Jiang, Aimin Yu, Daqian Song, Xinghua Wang.
(2017)
Ionic-liquid-functionalized zinc oxide nanoparticles for the solid-phase extraction of triazine herbicides in corn prior to high-performance liquid chromatography analysis.
JOURNAL OF SEPARATION SCIENCE,
40
(14):
(2992-2998).
|
|
10.
Xinpei Li, Shigang Wei, Ying Sun, Qun Sun, Li Liang, Bo Zhang, Huilan Piao, Daqian Song, Xinghua Wang.
(2016)
Glass slides functionalized by 1-carboxyethyl-3-methylimidazolium chloride for the determination of triazine herbicides in rice using high-performance liquid chromatography.
JOURNAL OF SEPARATION SCIENCE,
39
(23):
(4585-4591).
|
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11.
Lu Wang, Hongyuan Yan, Chunliu Yang, Zan Li, Fengxia Qiao.
(2016)
Synthesis of mimic molecularly imprinted ordered mesoporous silica adsorbent by thermally reversible semicovalent approach for pipette-tip solid-phase extraction-liquid chromatography fluorescence determination of estradiol in milk.
JOURNAL OF CHROMATOGRAPHY A,
1456
(58).
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12.
Guijiao Zhao, Chenhuan Wang, Min Kang, Lin Hao, Weihua Liu, Zhi Wang, Xiaodong Shi, Qiuhua Wu.
(2024)
Construction of magnetic azo-linked porous polymer for highly-efficient enrichment and separation of phenolic endocrine disruptors from environmental water and fish.
FOOD CHEMISTRY,
445
(138698).
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13.
Linna Guo, Qianqian Wang, Qiuhua Wu, Chun Wang, Baojiang Chen.
(2025)
β-Cyclodextrin based magnetic hyper-crosslinked polymer: A recyclable adsorbent for effective preconcentration of triazine herbicides in complex sample matrices.
FOOD CHEMISTRY,
463
(141219).
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