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60168-88-9

60168-88-9 Structure

60168-88-9 Structure
IdentificationMore
[Name]

Fenarimol
[CAS]

60168-88-9
[Synonyms]

2,4'-dichloro-alpha-(5-pyrimidinyl)benzhydryl alcohol
2,4'-DICHLORO-A-(PYRIMIDIN-5-YL)DIPHENYLMETHANOL
2,4-Dichloro-α-(pyrimidin-5-y1)diphenylmethanol
A-(2-CHLOROPHENYL)-A-(4-CHLOROPHENYL)-5-(PYRIMIDINEMETHANOL)
BLOC(R)
EL-222
FENARIMOL
RUBIGAN
RUBIGAN(R)
(2-Chlorophenyl)(4-chlorophenyl)5-pyrimidinylmethanol
(2-Chlorophenyl)-alpha-(4-chlorophenyl)-5-pyrimidinemethanol
.alpha.-(2-chlorophenyl)-.alpha.-(4-chlorophenyl)-5-Pyrimidinemethanol
2,4’-dichloro-alpha-(pyrimidin-5-yl)benzhydrylalcohol
5-Pyrimidinemethanol, alpha-(2-chlorophenyl)-alpha-(4-chlorophenyl)-
alpha-(2-chlorophenyl)-alpha-(4-chlorophenyl)-5-pyrimidinemethano
alpha-(2-Chlorophenyl)-alpha-(4-chlorophenyl)-5-pyrimidinemethanol
Bloc
Rimidin
(±)2-(2-chlorophenyl)-2-(4-chlorophenyl)-5-pyrimidinemethanol
(±)2,4-dichloro-α-(pyrimidin-5-yl)benzhydryl alcohol
[EINECS(EC#)]

262-095-7
[Molecular Formula]

C17H12Cl2N2O
[MDL Number]

MFCD00055325
[Molecular Weight]

331.2
[MOL File]

60168-88-9.mol
Chemical PropertiesBack Directory
[Melting point ]

117-119°C
[Boiling point ]

0°C
[density ]

1.3886 (rough estimate)
[vapor pressure ]

6.5 x 10-5 Pa at 25 °C
[refractive index ]

1.5490 (estimate)
[Fp ]

0°C
[storage temp. ]

0-6°C
[solubility ]

Chloroform (Slightly), Methanol (Slightly)
[form ]

neat
[pka]

2.58
[Water Solubility ]

14.6 mg l-1 (pH 3), 13.7 mg l-1 (pH 7), 13.8 mg l-1 (pH 10) at 25 °C
[color ]

Off-White to Light Yellow
[Merck ]

13,3986
[BRN ]

5972869
[Henry's Law Constant]

1.4×103 mol/(m3Pa) at 25℃, Duchowicz et al. (2020)
[Major Application]

agriculture
cleaning products
cosmetics
environmental
food and beverages
personal care
[InChI]

1S/C17H12Cl2N2O/c18-14-7-5-12(6-8-14)17(22,13-9-20-11-21-10-13)15-3-1-2-4-16(15)19/h1-11,22H
[InChIKey]

NHOWDZOIZKMVAI-UHFFFAOYSA-N
[SMILES]

OC(c1ccc(Cl)cc1)(c2cncnc2)c3ccccc3Cl
[CAS DataBase Reference]

60168-88-9(CAS DataBase Reference)
[NIST Chemistry Reference]

5-Pyrimidinemethanol, «alpha»-(2-chlorophenyl)-«alpha»-(4-chlorophenyl)-(60168-88-9)
[EPA Substance Registry System]

60168-88-9(EPA Substance)
Safety DataBack Directory
[Hazard Codes ]

Xn;N,N,Xn
[Risk Statements ]

R51/53:Toxic to aquatic organisms, may cause long-term adverse effects in the aquatic environment .
R62:Possible risk of impaired fertility.
R63:Possible risk of harm to the unborn child.
R64:May cause harm to breast-fed babies.
[Safety Statements ]

S36/37:Wear suitable protective clothing and gloves .
S61:Avoid release to the environment. Refer to special instructions safety data sheet .
[RIDADR ]

UN 3017/3077
[WGK Germany ]

2
[RTECS ]

UV9279400
[TSCA ]

TSCA listed
[Storage Class]

11 - Combustible Solids
[Hazard Classifications]

Aquatic Chronic 2
Lact.
Repr. 2
[Safety Profile]

Moderately toxic by ingestion. Experimental reproductive effects. Mutation data reported. When heated to decomposition it emits toxic fumes of Cland NOx.
[Toxicity]

LD50 in mice, rats (mg/kg): 4500, 2500 orally (Beraud)
Raw materials And Preparation ProductsBack Directory
[Raw materials]

n-Butyllithium-->2-Chlorobenzoyl chloride-->Methanone, (4-chlorophenyl)-5-pyriMidinyl--->2,4'-Dichlorobenzophenone-->5-Bromopyrimidine-->2-Bromochlorobenzene
Hazard InformationBack Directory
[General Description]

Pure white crystalline solid. Used as a fungicide. Irritates skin and mucous membranes.
[Reactivity Profile]

FENARIMOL produces toxic gases when heated to decomposition.
[Description]

Fenarimol is a foliar pyrimidine fungicide with systemic, curative and protective action. It has a moderate aqueous solubility but is soluble in many organic solvents. It is not considered to be volatile. Fenarimol may be very persistent in soils and aquatic systems depending upon local conditions. It is moderately toxic to most terrestrial and aquatic species. It’s oral toxicity to humans is low but there are concerns about potential chronic effects relating to reproduction/development and it is considered to be an endocrine disrupter.
[Chemical Properties]

The pure product is white crystals. mp 117-119°C, vapor pressure 1.33×10-5 Pa (25°C). Soluble in organic solvents such as acetone, acetonitrile, benzene, methanol, and chloroform; poorly soluble in water. Stable to acids, alkalis, and heat, but sensitive to chlorine.
[Uses]

Fenarimol is a broad spectrum pyrimidine carbinol fungicide with protective, curative and eradicative activities against powdery mildew (Erysiphe spp., Pudusphaera leucutricha, Uncinula necatur, Sphaerutheca spp., Leveillula spp.) and scab (Venturia spp.) in many crops. It also controls powdery mildew (Sphaerutheca pannusa) in ornamentals and Fusarium patch (Micruduccium niuale), Take-all patch (Laefisaria fuciformis), Dollar spot (Sderutina humeucavpa) and red thread (Gaeumannumyces graminis) in turf and amenity grasses.
[Uses]

Fenarimol is a pyrimidine based fungicide which acts against rusts, blackspot and mildew fungi and it works by inhibiting the fungus’s biosynthesis of important steroid molecules.
[Uses]

Plant fungicide.
[Definition]

ChEBI: (2-chlorophenyl)(4-chlorophenyl)pyrimidin-5-ylmethanol is a member of the class of pyrimidines that is pyrimidin-5-ylmethanol in which one of the hydrogens attached to the carbon bearing the hydroxy group is replaced by a 2-chlorophenyl group while the other is replaced by a 4-chlorophenyl group. It is a tertiary alcohol, a member of monochlorobenzenes and a member of pyrimidines.
[Production Methods]

Commercial production of fenarimol involves a multi-step synthesis that centres on constructing its distinctive aromatic and heterocyclic framework. The process typically begins with the preparation of key intermediates such as chlorinated pyrimidines and substituted phenyl compounds, which are then coupled through nucleophilic substitution reactions. These steps are carried out under controlled conditions to ensure high yield and purity, often using organic solvents and catalysts to facilitate the reactions.
[Mechanism of action]

Systemic, curative and protective action. Disrupts membrane function.
[Metabolic pathway]

The primary dissipation mechanism of fenarimol in the environment involves photolysis on plants/soil surfaces and water. More than 80 photoproducts have been observed, resulting from the reduction of the pyrimidine ring, hydrolysis, ring migration and cleavage of the phenyl and pyrimidine ring moieties. Under laboratory conditions in the dark, fenarimol is relatively persistent in soil, but a more rapid dissipation was observed under field conditions with DT50 values of 18-140 days, attributed to photolysis of fenarimol on the soil surface. Fenarimol degrades in/on plant foliage/fruit surfaces mainly by photochemical processes. In animals, fenarimol is metabolised extensively to yield hydroxylated, cleavage and dechlorination products. The primary photolytic and metabolic pathways of fenarimol are presented in Schemes 1 and 2.
[Degradation]

Fenarimol(1) is stable in sterile buffered water in the dark at pH 3,6 and 9 at 25 °C, 37 °C and 52 °C for 28 days (Decker and Sullivan, 1975) but is readily degraded via photolysis. The photolytic DT50 in distilled water under natural sunlight and clear sky conditions at 40°N in mid-summer was approximately 12 hours (Day, 1975). The primary aqueous photolysis reaction involved the migration of the pyrimidine ring to one of the chlorophenyl rings, followed by the oxidation of the carbinol moiety to the corresponding ketone to yield 4-chloro-2-(5-pyrimidyl)-2'-chlorobenzophenone (2).
Fenarimol was extensively photodegraded on solid surfaces. More than 80 photodegradation products were formed when fenarimol was exposed to sunlight on a stainless steel surface for up to 200 hours (Althaus and Bewley, 1978a). All photoproducts were formed at very low levels (less than 3% each) and 14 were identified. An abbreviated photogradation pathway of fenarimol is presented in Scheme 1. These products were generated from the following reactions: the migration of the pyrimidine ring to one of the chlorophenyl rings, followed by the oxidation of the carbinol moiety to yield compound 2; cleavage of either one of the chlorophenyl (to yield 3,4) or pyrimidine rings (5,6); aryl hydroxylation of one of the chlorophenyl rings (7); carbinol dehydroxylation reaction to yield 8 and a bridged fluorene product (9) from the dechlorination reaction. Various cleavage products (carboxylic acids) derived from the chlorophenyl (10-13) and the pyrimidine moieties (14) were also observed.
[Pesticide Type]

Fungicide
Material Safety Data Sheet(MSDS)Back Directory
[msds information]

2,4'-Dichloro-alpha-(5-pyrimidinyl)benzhydryl alcohol(60168-88-9).msds
Well-known Reagent Company Product InformationBack Directory
[Sigma Aldrich]

60168-88-9(sigmaaldrich)
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