ChemicalBook--->CAS DataBase List--->104098-48-8

104098-48-8

104098-48-8 Structure

104098-48-8 Structure
IdentificationMore
[Name]

Imazameth
[CAS]

104098-48-8
[Synonyms]

(+/-)-2-(4,5-dihydro-4-methyl-4-(1-methylethyl)-5-oxo-1h-imidazol-2-yl)-5-methyl-3-pyridinecarboxylic acid
IMAZAMETH
IMAZAPIC
Imazapic, Pestanal
2-(4-isopropyl-4-methyl-5-oxo-2-imidazolin-2-yl)-5-methylnicotinic acid
imazapic(bsi,iso)
CADRE
(+/-)-2-(4,5-Dihydro-4-methyl-4-(1-methylethyl)-5-oxo-1H-imidazol-2-yl)-5-methyl-3-pyridinecarboxylic acid
IMAZAPI
2-(4-Isopropyl-4-methyl-5-oxo-2-imidazolin-2-yl)-5-methylnicotinic acid, 2-[4,5-Dihydro-4-methyl-4-(1-methylethyl)-5-oxo-1H-imidazol-2-yl]-5-methyl-3-pyridinecarboxylic acid
[Molecular Formula]

C14H17N3O3
[MDL Number]

MFCD04307828
[Molecular Weight]

275.3
[MOL File]

104098-48-8.mol
Chemical PropertiesBack Directory
[Melting point ]

205-207°C
[density ]

1.31±0.1 g/cm3(Predicted)
[storage temp. ]

0-6°C
[solubility ]

DMSO (Slightly), Ethanol (Slightly, Sonicated), Methanol (Slightly, Sonicated)
[form ]

neat
[pka]

10.72±0.40(Predicted)
[color ]

White to Off-White
[Major Application]

agriculture
environmental
[InChI]

1S/C14H17N3O3/c1-7(2)14(4)13(20)16-11(17-14)10-9(12(18)19)5-8(3)6-15-10/h5-7H,1-4H3,(H,18,19)(H,16,17,20)
[InChIKey]

PVSGXWMWNRGTKE-UHFFFAOYSA-N
[SMILES]

CC(C)C1(C)N=C(NC1=O)c2ncc(C)cc2C(O)=O
[LogP]

2.470
[CAS DataBase Reference]

104098-48-8(CAS DataBase Reference)
[EPA Substance Registry System]

104098-48-8(EPA Substance)
Safety DataBack Directory
[WGK Germany ]

3
[RTECS ]

US7079100
[HS Code ]

29333990
[Storage Class]

11 - Combustible Solids
[Hazard Classifications]

Aquatic Chronic 3
Eye Irrit. 2
[Hazardous Substances Data]

104098-48-8(Hazardous Substances Data)
Hazard InformationBack Directory
[Description]

Imazapic is a selective pre- and post-emergent herbicide. It has a high aqueous solubility, is volatile and, based on its chemical properties, is moderately mobile and may leach to groundwater. It may be persistent in soil systems but usually degrades quickly in aquatic systems via photolysis. It has a low mammalian toxicity and has a high potential for bioaccumulation. It has a low level of toxicity to birds but is more toxic to aquatic life and honeybees.
[Uses]

Imazapic can be used in analytical and biological studies of residue analysis and determination of imidazolinone herbicides in sunflower and soil by GC-MS.
[Uses]

Imazapic is registered throughout the world for use in peanuts, rangeland, sugarcane, and imidazolinoneresistant canola (12). A nonionic surfactant or oil adjuvant is required for maximum activity.
[Definition]

ChEBI: 5-methyl-2-[4-methyl-5-oxo-4-(propan-2-yl)-4,5-dihydro-1H-imidazol-2-yl]pyridine-3-carboxylic acid is a pyridinemonocarboxylic acid that is 5-methylpyridine-3-carboxylic acid which is substituted at position 2 by a 4,5-dihydro-imidazol-2-yl group, which in turn is substituted at positions 4, 4, and 5 by isopropyl, methyl, and oxo groups, respectively. It is a pyridinemonocarboxylic acid, an imidazolone, a member of imidazolines and a member of methylpyridines.
[Production Methods]

Imazapic is synthesised through a multi-step chemical process involving the construction of its imidazolinone core and pyridinecarboxylic acid side chain. The production typically begins with the formation of the imidazolinone ring, which is achieved by cyclising precursors such as methyl isobutyrate and urea derivatives under controlled conditions. This intermediate is then coupled with a methyl-substituted pyridine compound through a condensation or acylation reaction to yield the final active ingredient.
[Mechanism of action]

Selective, systemic, contact and residual activity, inhibiting the production of amino acids necessary for cell division and growth. Inhibits plant amino acid synthesis - acetohydroxyacid synthase AHAS.
[Pharmacology]

Imazapic kills plants by inhibiting acetolactate synthase (ALS) (I50 = 1 μM), which is the first common enzyme in the biosynthesis of the branched chain amino acids, valine, leucine, and isoleucine. Imazapic is rapidly absorbed through the leaves of plants. Once it enters the plant, imazapic translocates to the growing points and growth ceases within 1 day after herbicide application followed by chlorosis and then necrosis of the growing points. Total plant death will occur within 2 to 3 weeks after treatment.
[Environmental Fate]

Imazapic is weakly to moderately adsorbed on sandy loam and silt loam soils. The Freundlich adsorption coefficient ranges from 0.17 to 2.99, (12). Because imazapic is a weak acid and exists in different ionic states, soil pH has an effect on soil binding properties. The anionic form predominates at soil pH as low as 5.5, and this form binds weakly to soil. The neutral or molecular form is important at soil pH from 4 to 6.5. This form binds to soil organic matter and clay. The cationic form is important at pH less than 4. Because the soil is a heterogeneous mixture of acid and base chemical groups, there may be sites within a particular soil that are 2 to 3 pH units higher or lower than the average pH. The cationic form will bind tightly to the lower pH components. Because of these interactions, small decreases in pH below 6 will result in large increases in binding. The half-life of imazapic in the soil is 106 d. Imazapic remains in the top 30 cm of the soil with low leaching potential. The degradation route of imazapic in the soil has not been determined.
[Metabolism]

Plant Metabolism. The selectivity of imazapic is due to differential rates and routes of metabolism in tolerant crops versus susceptible weeds(10). Imazapic has excellent selectivity in peanuts, but is not selective in soybeans. The difference in the tolerance of these two legumes is due to the different routes of metabolism of imazapic in the two crops. The primary metabolite in soybeans is an imidazopyrrolo-pyridine derivative, whereas in peanuts, the primary metabolite is the glucose conjugate of hydroxy-imazapic. Although the imidazopyrrolo-pyridine derivative formed in soybean is immobile and is not an inhibitor of acetolactate synthase, the rate of degradation of imazapic in soybeans is not rapid enough for selectivity (10). In imidazolinone-resistant crops, the primary mechanism of selectivity is due to an altered acetolactate synthase that is not inhibited by the imazapic (11).
Animal Metabolism (12). Metabolism studies in the rat showed that imazapic is rapidly excreted in the urine. There was no accumulation of imazapic or any of its derivatives in the liver, kidney, muscle, fat, or blood.
[Toxicity evaluation]

Imazapic has shown no mutagenic or genotoxic activity in the Ames assay, mammalian cell gene mutation assay, in vitro chromosome aberration assay, in vitro unscheduled DNA synthesis (URS) assay, or the in vivo dominant lethal assay inmale rats. The acute toxicity and effects on wildlife and soil microflora of imazapic are shown in Table 6. This herbicide also has a low potential for bioaccumulation in fish.
[Pesticide Type]

Herbicide
Spectrum DetailBack Directory
[Spectrum Detail]

Imazameth(104098-48-8)1HNMR
Well-known Reagent Company Product InformationBack Directory
[Sigma Aldrich]

104098-48-8(sigmaaldrich)
104098-48-8 suppliers list
Company Name: J & K SCIENTIFIC LTD.  
Telephone: 18210857532 18210857532
Website: https://www.jkchemical.com
Company Name: Sichuan Kulinan Technology Co., Ltd  
Telephone: 400-1166-196 18981987031
Website: http://www.hx-r.com/
Company Name: ShangHai YuanYe Biotechnology Co., Ltd.  
Telephone: 15026964105
Website: www.shyuanye.com
Company Name: Haoyuan Chemexpress Co., Ltd.  
Telephone: 021-58950125
Website: http://www.chemexpress.com.cn
Company Name: Shanghai Aladdin Bio-Chem Technology Co.,LTD  
Telephone: 400-6206333 13167063860
Website: www.aladdin-e.com/
Company Name: Nanjing Sunlida Biological Technology Co., Ltd.  
Telephone: 025-57798810 18652991625
Website:
Company Name: Shanghai JONLN Reagent Co., Ltd.  
Telephone: 400-0066400 13621662912
Website: http://www.jonln.com
Company Name: Quality Control Solutions Ltd.  
Telephone: 0755-66853366 13670046396
Website: www.qcsrm.com
Company Name: Chizhou Kailong Import and Export Trade Co., Ltd.  
Telephone:
Website: www.chemicalbook.com/ShowSupplierProductsList16778/0_EN.htm
Company Name: Alta Scientific Co., Ltd.  
Telephone: 022-6537-8550 15522853686
Website: http://www.altascientific.cn
Company Name: Guangzhou QiYun Biotechnology Co., Ltd.  
Telephone: 020-61288194 61288195
Website: www.gzqiyun.com
Company Name: Shandong Xiya Chemical Co., Ltd.  
Telephone: 4009903999 13395398332
Website: http://www.xiyashiji.com
Company Name: Raw material medicin reagent co.,Ltd  
Telephone:
Website: http://www.njromanme.com
Company Name: Beijing Solarbio Science & Tecnology Co., Ltd.  
Telephone: 17801761073 18101056239
Website: http://www.solarbio.com
Company Name: Shenzhen Simeiquan Biotechnology Co. Ltd  
Telephone: 18126413629 0755-23311925 2355327053
Website: www.chemicalbook.com/ShowSupplierProductsList19894/0_EN.htm
Company Name: Amadis Chemical Company Limited  
Telephone: 571-89925085
Website: http://www.amadischem.com
Company Name: Shenzhen Sendi Biological Technology Co., Ltd.  
Telephone: 18124570582 TEL:0755-23574479 2355327139
Website: www.chemicalbook.com/ShowSupplierProductsList19933/0_EN.htm
Company Name: Guangzhou Kafen Biotech Co.,Ltd  
Telephone: 18029243487 2355327168
Website: www.kafenchem.com
Tags:104098-48-8 Related Product Information
81334-34-1 101200-48-0 69377-81-7 119-36-8 79-20-9 60-56-0 288-32-4 68-12-2 67-68-5 80-62-6 74223-64-6 143390-89-0 298-00-0 3222-49-9 59-67-6 60-51-5 74-83-9 114311-32-9