Structure of 26452-80-2
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CAS No. : | 26452-80-2 |
Formula : | C5H3Cl2N |
M.W : | 147.99 |
SMILES Code : | C1=C(C=C(N=C1)Cl)Cl |
MDL No. : | MFCD00955618 |
InChI Key : | TYPVHTOETJVYIV-UHFFFAOYSA-N |
Pubchem ID : | 33515 |
GHS Pictogram: |
![]() |
Signal Word: | Warning |
Hazard Statements: | H227-H302-H315-H319 |
Precautionary Statements: | P270-P210-P264-P280-P302+P352-P370+P378-P337+P313-P305+P351+P338-P362+P364-P332+P313-P301+P312+P330-P403+P235-P501 |
Num. heavy atoms | 8 |
Num. arom. heavy atoms | 6 |
Fraction Csp3 | 0.0 |
Num. rotatable bonds | 0 |
Num. H-bond acceptors | 1.0 |
Num. H-bond donors | 0.0 |
Molar Refractivity | 34.26 |
TPSA ? Topological Polar Surface Area: Calculated from |
12.89 ?2 |
Log Po/w (iLOGP)? iLOGP: in-house physics-based method implemented from |
1.8 |
Log Po/w (XLOGP3)? XLOGP3: Atomistic and knowledge-based method calculated by |
2.44 |
Log Po/w (WLOGP)? WLOGP: Atomistic method implemented from |
2.39 |
Log Po/w (MLOGP)? MLOGP: Topological method implemented from |
1.68 |
Log Po/w (SILICOS-IT)? SILICOS-IT: Hybrid fragmental/topological method calculated by |
2.73 |
Consensus Log Po/w? Consensus Log Po/w: Average of all five predictions |
2.21 |
Log S (ESOL):? ESOL: Topological method implemented from |
-2.85 |
Solubility | 0.209 mg/ml ; 0.00141 mol/l |
Class? Solubility class: Log S scale |
Soluble |
Log S (Ali)? Ali: Topological method implemented from |
-2.35 |
Solubility | 0.655 mg/ml ; 0.00443 mol/l |
Class? Solubility class: Log S scale |
Soluble |
Log S (SILICOS-IT)? SILICOS-IT: Fragmental method calculated by |
-3.24 |
Solubility | 0.0859 mg/ml ; 0.000581 mol/l |
Class? Solubility class: Log S scale |
Soluble |
GI absorption? Gatrointestinal absorption: according to the white of the BOILED-Egg |
High |
BBB permeant? BBB permeation: according to the yolk of the BOILED-Egg |
Yes |
P-gp substrate? P-glycoprotein substrate: SVM model built on 1033 molecules (training set) |
No |
CYP1A2 inhibitor? Cytochrome P450 1A2 inhibitor: SVM model built on 9145 molecules (training set) |
Yes |
CYP2C19 inhibitor? Cytochrome P450 2C19 inhibitor: SVM model built on 9272 molecules (training set) |
No |
CYP2C9 inhibitor? Cytochrome P450 2C9 inhibitor: SVM model built on 5940 molecules (training set) |
No |
CYP2D6 inhibitor? Cytochrome P450 2D6 inhibitor: SVM model built on 3664 molecules (training set) |
No |
CYP3A4 inhibitor? Cytochrome P450 3A4 inhibitor: SVM model built on 7518 molecules (training set) |
No |
Log Kp (skin permeation)? Skin permeation: QSPR model implemented from |
-5.47 cm/s |
Lipinski? Lipinski (Pfizer) filter: implemented from |
0.0 |
Ghose? Ghose filter: implemented from |
None |
Veber? Veber (GSK) filter: implemented from |
0.0 |
Egan? Egan (Pharmacia) filter: implemented from |
0.0 |
Muegge? Muegge (Bayer) filter: implemented from |
2.0 |
Bioavailability Score? Abbott Bioavailability Score: Probability of F > 10% in rat |
0.55 |
PAINS? Pan Assay Interference Structures: implemented from |
0.0 alert |
Brenk? Structural Alert: implemented from |
1.0 alert: heavy_metal |
Leadlikeness? Leadlikeness: implemented from |
No; 1 violation:MW<1.0 |
Synthetic accessibility? Synthetic accessibility score: from 1 (very easy) to 10 (very difficult) |
1.47 |
* All experimental methods are cited from the reference, please refer to the original source for details. We do not guarantee the accuracy of the content in the reference.
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
81% | Description 52,4-dichloro-3-iodo-pyridine (D5)To a solution of 2,4-dichloropyridine (5.2 g, 35.137 mmol) and DIPEA (3.911 g,38.651 mmol) in dry THF (40 ml) cooled at -78 0C under a nitrogen atmosphere, was added M-butyllithium (24.157 ml, 38.651 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 0C for 45 min. and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 ml) was added dropwise. The mixture was stirred at -78 0C for 1 h. The mixture was allowed to warm to room temperature, diluted with EtOAc and quenched with NH4Cl (aqueous sat. solution) and Na2S2O3 (aqueous sat. solution). The combined organic extracts were separated, washed with NaHCO3 (aqueous sat. solution), dried (Na2SO4) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; Heptane/DCM up to 20% as eluent). The desired fractions were collected and concentrated in vacuo to yield intermediate compound D5 (7.8 g, 81%). | |
81% | To a solution of 2,4-dichloropyridine (5.2 g, 35.137 mmol) and diisopropylamine (3.911 g, 38.651 mmol) in dry THF (40 ml) cooled at -78 0C under a nitrogen atmosphere, was added M-butyllithium (24.157 ml, 38.651 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 0C for 45 min., then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 ml) was added dropwise and the mixture was further stirred at -78 0C for 1 h. The mixture was allowed to warm to r.t., diluted with EtOAc and quenched with NH4Cl (aqueous sat. solution) and Na2S2O3 (aqueous sat. solution). The organic layer was separated, washed with NaHCO3 (aqueous sat. solution), dried (Na2SO4) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; Heptane/DCM up to 20% as eluent). The desired fractions were collected and concentrated in vacuo to yield intermediate compound D 12 (7.8 g, 81%) | |
81% | To a solution of 2,4-dichloropyridine (5.2 g, 35.137 mmol) and diisopropylamine (3.911 g, 38.651 mmol) in dry THF (40 ml) cooled at -78 0C under a nitrogen atmosphere, was added n-butyllithium (24.157 ml, 38.651 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 0C for 45 min. and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 ml) was added dropwise. The mixture was stirred at -78 0C for 1 h., allowed to warm to r.t., diluted with EtOAc and quenched with NH4Cl (aqueous sat. solution) and Na2S2O3 (aqueous sat. solution). The organic layer was separated, washed with NaHCO3 (aqueous sat. solution), dried (Na2SO4) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; Heptane/DCM up to 20% as eluent). The desired fractions were collected and concentrated in vacuo to yield intermediate compound D24 (7.8 g, 81%). |
81% | 2,4-Dichloro-3 -iodo-pyridine (1-5)To a solution of 2,4-dichloropyridine (5.2 g, 35.14 mmol) and DIPEA (3.91 g, 38.65 mmol) in dry THF (40 mL) cooled at -78 C under a nitrogen atmosphere, was added n-BuLi (24.16 mL, 38.65 mmol, 1.6 M in hexanes) dropwise. The resulting r.m. was stirred at -78 C for 45 min and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 mL) was added dropwise. The mixture was stirred at -78 C for 1 h, allowed to warm to r. , diluted with EtOAc and quenched with H4CI (aq. sat. sol.) and Na2S203 (aq. sat. sol). The organic layer was separated, washed with NaHC03 (aq. sat. sol), dried (Na2S04) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; Heptane/DCM up to 20% as eluent). The desired fractions were collected and concentrated in vacuo to yield intermediate 1-5 (7.8 g, 81%). | |
81% | Intermediate 1 (1-1)2,4-Dichloro-3-iodo-pyridine (1-1)To a solution of 2,4-dichloropyridine (5.2 g, 35.14 mmol) and diisopropylamine (3.91 g, 38.65 mmol) in dry THF (40 mL) cooled at -78 C under a nitrogen atmosphere, was added n-butyllithium (24.16 mL, 38.65 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 C for 45 min. and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 mL) was added dropwise. The mixture was stirred at -78 C for 1 h., allowed to warm to r.t., diluted with EtOAc and quenched with H4CI (aqueous sat. solution) and Na2S203 (aqueous sat. solution). The organic layer was separated, washed with NaHC03 (aqueous sat. solution), dried (Na2S04) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; DCM in heptane 0/100 to 20/80). The desired fractions were collected and concentrated in vacuo to yield intermediate compound 1-1(7.8 g, 81%). | |
81% | Intermediate 7 (1-7)2,4-Dichloro-3 -iodo-pyridine (1-7) To a solution of 2,4-dichloropyridine (5.2 g, 35.14 mmol) and DIPEA (3.91 g,38.65 mmol) in dry THF (40 mL) cooled at -78 C under a nitrogen atmosphere, was added n-butyllithium (24.16 mL, 38.65 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 C for 45 min. and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 mL) was added dropwise. The mixture was stirred at -78 C for 1 h., allowed to warm to r.t., diluted with EtOAc and quenched with H4CI (aqueous sat. solution) and Na2S203 (aqueous sat. solution). The organic layer was separated, washed with NaHC03 (aqueous sat. solution), dried (Na2S04) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; DCM in heptane 0/100 to 20/80). The desired fractions were collected and concentrated in vacuo to yield intermediate compound 1-7 (7.8 g, 81%). | |
81% | Intermediate 1 (1-1)2,4-Dichloro-3-iodo-pyridine (1-1)To a solution of 2,4-dichloropyridine (5.2 g, 35.14 mmol) and diisopropylamine (3.91 g, 38.65 mmol) in dry THF (40 mL) cooled at -78 C under a nitrogen atmosphere, was added n-butyllithium (24.16 mL, 38.65 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 C for 45 min. and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 mL) was added dropwise. The mixture was stirred at -78 C for 1 h., allowed to warm to r.t., diluted with EtOAc and quenched with H4CI (aqueous sat. solution) and Na2S203 (aqueous sat. solution). The organic layer was separated, washed with NaHC03 (aqueous sat. solution), dried (Na2S04) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; DCM in heptane 0/100 to 20/80). The desired fractions were collected and concentrated in vacuo to yield intermediate compound 1-1 (7.8 g, 81%). | |
81% | With n-butyllithium; iodine; diisopropylamine; In tetrahydrofuran; n-heptane; at -78℃; for 1.75h;Inert atmosphere; | 2,4-Dichloro-3-iodo-pyridine (I-1) To a solution of 2,4-dichloropyridine (5.2 g, 35.14 mmol) and diisopropylamine (3.91 g, 38.65 mmol) in dry THF (40 mL) cooled at -78 C. under a nitrogen atmosphere, was added n-butyllithium (24.16 mL, 38.65 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 C. for 45 min. and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 mL) was added dropwise. The mixture was stirred at -78 C. for 1 h., allowed to warm to r.t., diluted with EtOAc and quenched with NH4Cl (aqueous sat. solution) and Na2S2O3 (aqueous sat. solution). The organic layer was separated, washed with NaHCO3 (aqueous sat. solution), dried (Na2SO4) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; DCM in heptane 0/100 to 20/80). The desired fractions were collected and concentrated in vacuo to yield intermediate compound I-1 (7.8 g, 81%). |
81% | 2,4-Dichloro-3-iodo-pyridine (I-5) To a solution of 2,4-dichloropyridine (5.2 g, 35.14 mmol) and DIPEA (3.91 g, 38.65 mmol) in dry THF (40 mL) cooled at -78 C. under a nitrogen atmosphere, was added n-BuLi (24.16 mL, 38.65 mmol, 1.6 M in hexanes) dropwise. The resulting r.m. was stirred at -78 C. for 45 min and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 mL) was added dropwise. The mixture was stirred at -78 C. for 1 h, allowed to warm to r.t., diluted with EtOAc and quenched with NH4Cl (aq. sat. sol.) and Na2S2O3 (aq. sat. sol.). The organic layer was separated, washed with NaHCO3 (aq. sat. sol.), dried (Na2SO4) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; Heptane/DCM up to 20% as eluent). The desired fractions were collected and concentrated in vacuo to yield intermediate I-5 (7.8 g, 81%). | |
81% | To a solution of 2,4-dichloropyridine (5.2 g, 35.137 mmol) and diisopropylamine (3.911 g, 38.651 mmol) in dry THF (40 ml) cooled at -78 C under a nitrogen atmosphere, was added n-butyllithium (24.157 ml, 38.651 mmol, 1.6 M in hexanes) dropwise. The resulting reaction mixture was stirred at -78 C for 45 min and then a solution of iodine (9.81 g, 38.651 mmol) in dry THF (20 ml) was added dropwise. The mixture was stirred at -78 C for 1 h, allowed to warm to rt, diluted with EtOAc and quenched with NH4Cl (aqueous sat. solution) and Na2S203 (aqueous sat. solution). The organic layer was separated, washed with NaHC03 (aqueous sat. solution), dried (Na2S04) and concentrated in vacuo. The crude product was purified by column chromatography (silica gel; heptane/DCM up to 20% as eluent). The desired fractions were collected and concentrated in vacuo to yield 1-1 (7.8 g, 81%). |
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
With sodium t-butanolate;palladium diacetate; johnphos; In toluene; at 100.0℃; for 4.0h; | Step A: Stir a solution of 2,4-dichloro-pyridine (6.7 mmol, 1 g), N-Boc piperazine (8.1 mmol, 1.5 g), sodium tert butoxide (9.5 mmol, 0.9 g), palladium (II) acetate (0.7 mmol, 0.15 g) and 2-(di- tbutylphosphino)biphenyl (0.7 mmol, 0.2 g) dissolved in toluene under nitrogen at 100 C for 4 hours. Cool down to room temperature and add water. Extract in ethyl acetate washing the organic layer with water and saturated aq. sodium chloride. Dry organic layer over sodium sulfate, filter, and concentrate under reduced pressure to give 4-(4-chloro-ρyridin-2-yl)-piperazine-l-carboxylic acid tert-butyl ester as a residue. Subject residue to silica gel chromatography eluting with hexanes / ethyl acetate in gradient (from 10% to 50%). MS(ES): m/z = 298 [M+H]. |
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
22%; 51% | With N-ethyl-N,N-diisopropylamine; In N,N-dimethyl-formamide; at 120.0℃; | 2,4-Dichloropyridine (1.00 g, 6.7 mmol) and piperazine-1-carboxylic acid tert-butyl ester (1.64 g, 8.8 mmol) were suspended in DMF (10 ml) and iPr2NEt (2.30 ml, 14 mmol) was added. After stirring over night at 120 C. the reaction mixture was diluted with H2O and extracted with EtOAc. The organic layer was dried (Na2SO4) and the solvent was evaporated. The residue was purified by flash chromatography (SiO2 50 g, nHept/EtOAc 5 to 100%) to yield 1.02 g (51%) of product and 450 mg (22%) of the regioisomer as byproduct. Light yellow solid. m/z: 298.4 ([M+H]+). |
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
38% | With caesium carbonate;tris-(dibenzylideneacetone)dipalladium(0); 2,2'-bis-(diphenylphosphino)-1,1'-binaphthyl; In ISOPROPYLAMIDE; at 120℃; for 1h;Microwave irradiation; | Step 1To a solution of 2, 4-dichloropyridine (0.500 g, 3.39 mmoL) and 4-amino-N- methylbenzamide (0.510 g, 3.39 mmoL) in dimethylacetamide (1 mL) was added cesium carbonate (1.6 g, 5.08 mmoL) and the reaction mixture was degassed for 15 min. Pd2(dba)3 (0.154 g, 0.169 mmol) and BINAP (105 mg, 0.169 mmol) were added and the reaction mixture was irradiated in the microwave at 120 C for 1 h. Then reaction was quenched with water and extracted with EtOAc (2 x 50 mL). The organic extracts were washed with brine, dried over anhydrous sodium sulfate and concentrated under reduced pressure. Purification by silica gel column chromatography provided 3-((4-chloropyridin-2-yl)amino)-N-methylbenzamide (0.300 g, 38%) as a solid. Observed mass (M+l): 262.1 |
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
83% | With palladium diacetate; caesium carbonate; 4,5-bis(diphenylphosphino)-9,9-dimethylxanthene; In 1,4-dioxane; at 100℃; for 0.5h;Microwave irradiation; Inert atmosphere; Sealed tube; | General procedure: Aniline (62μl, 0.68 mmol), 2,4-dichloropyridine (100 mg, 0.68 mmol), cesium carbonate (442 mg, 1.36 mmol), xantphos (47 mg, 0.08 mmol) and Pd(OAc)2 (12 mg, 0.05 mmol) were combined in a microwave tube, sealed and purged with nitrogen. Dioxane (3 mL) was then added and the reaction solution degassed with nitrogen prior to heating at 100C for 30 minutes. The reaction mixture was then filtered and the filtrate was purified by reverse phase chromatography, utilizing a 20-65% gradient over 9 mins, with 0.5% ammonia as modifier to afford 4-chloro-N-phenyl-pyridin-2-amine |
Tags: 26452-80-2 synthesis path| 26452-80-2 SDS| 26452-80-2 COA| 26452-80-2 purity| 26452-80-2 application| 26452-80-2 NMR| 26452-80-2 COA| 26452-80-2 structure
A389710 [7379-35-3]
4-Chloropyridine hydrochloride
Similarity: 0.80
A118084 [73998-95-5]
(4,6-Dichloropyridin-3-yl)methanol
Similarity: 0.76
A389710 [7379-35-3]
4-Chloropyridine hydrochloride
Similarity: 0.80
A118084 [73998-95-5]
(4,6-Dichloropyridin-3-yl)methanol
Similarity: 0.76
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P305 + P351 + P338 | IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses, if present and easy to do. Continue rinsing. |
P306 + P360 | IF ON CLOTHING: Rinse Immediately contaminated CLOTHING and SKIN with plenty of water before removing clothes. |
P307 + P311 | IF exposed: call a POISON CENTER or doctor/physician. |
P308 + P313 | IF exposed or concerned: Get medical advice/attention. |
P309 + P311 | IF exposed or if you feel unwell: call a POISON CENTER or doctor/physician. |
P332 + P313 | IF SKIN irritation occurs: Get medical advice/attention. |
P333 + P313 | IF SKIN irritation or rash occurs: Get medical advice/attention. |
P335 + P334 | Brush off loose particles from skin. Immerse in cool water/wrap in wet bandages. |
P337 + P313 | IF eye irritation persists: Get medical advice/attention. |
P342 + P311 | IF experiencing respiratory symptoms: call a POISON CENTER or doctor/physician. |
P370 + P376 | In case of fire: Stop leak if safe to Do so. |
P370 + P378 | In case of fire: |
P370 + P380 | In case of fire: Evacuate area. |
P370 + P380 + P375 | In case of fire: Evacuate area. Fight fire remotely due to the risk of explosion. |
P371 + P380 + P375 | In case of major fire and large quantities: Evacuate area. Fight fire remotely due to the risk of explosion. |
Storage | |
Code | Phrase |
P401 | |
P402 | Store in a dry place. |
P403 | Store in a well-ventilated place. |
P404 | Store in a closed container. |
P405 | Store locked up. |
P406 | Store in corrosive resistant/ container with a resistant inner liner. |
P407 | Maintain air gap between stacks/pallets. |
P410 | Protect from sunlight. |
P411 | |
P412 | Do not expose to temperatures exceeding 50 oC/ 122 oF. |
P413 | |
P420 | Store away from other materials. |
P422 | |
P402 + P404 | Store in a dry place. Store in a closed container. |
P403 + P233 | Store in a well-ventilated place. Keep container tightly closed. |
P403 + P235 | Store in a well-ventilated place. Keep cool. |
P410 + P403 | Protect from sunlight. Store in a well-ventilated place. |
P410 + P412 | Protect from sunlight. Do not expose to temperatures exceeding 50 oC/122oF. |
P411 + P235 | Keep cool. |
Disposal | |
Code | Phrase |
P501 | Dispose of contents/container to ... |
P502 | Refer to manufacturer/supplier for information on recovery/recycling |
Physical hazards | |
Code | Phrase |
H200 | Unstable explosive |
H201 | Explosive; mass explosion hazard |
H202 | Explosive; severe projection hazard |
H203 | Explosive; fire, blast or projection hazard |
H204 | Fire or projection hazard |
H205 | May mass explode in fire |
H220 | Extremely flammable gas |
H221 | Flammable gas |
H222 | Extremely flammable aerosol |
H223 | Flammable aerosol |
H224 | Extremely flammable liquid and vapour |
H225 | Highly flammable liquid and vapour |
H226 | Flammable liquid and vapour |
H227 | Combustible liquid |
H228 | Flammable solid |
H229 | Pressurized container: may burst if heated |
H230 | May react explosively even in the absence of air |
H231 | May react explosively even in the absence of air at elevated pressure and/or temperature |
H240 | Heating may cause an explosion |
H241 | Heating may cause a fire or explosion |
H242 | Heating may cause a fire |
H250 | Catches fire spontaneously if exposed to air |
H251 | Self-heating; may catch fire |
H252 | Self-heating in large quantities; may catch fire |
H260 | In contact with water releases flammable gases which may ignite spontaneously |
H261 | In contact with water releases flammable gas |
H270 | May cause or intensify fire; oxidizer |
H271 | May cause fire or explosion; strong oxidizer |
H272 | May intensify fire; oxidizer |
H280 | Contains gas under pressure; may explode if heated |
H281 | Contains refrigerated gas; may cause cryogenic burns or injury |
H290 | May be corrosive to metals |
Health hazards | |
Code | Phrase |
H300 | Fatal if swallowed |
H301 | Toxic if swallowed |
H302 | Harmful if swallowed |
H303 | May be harmful if swallowed |
H304 | May be fatal if swallowed and enters airways |
H305 | May be harmful if swallowed and enters airways |
H310 | Fatal in contact with skin |
H311 | Toxic in contact with skin |
H312 | Harmful in contact with skin |
H313 | May be harmful in contact with skin |
H314 | Causes severe skin burns and eye damage |
H315 | Causes skin irritation |
H316 | Causes mild skin irritation |
H317 | May cause an allergic skin reaction |
H318 | Causes serious eye damage |
H319 | Causes serious eye irritation |
H320 | Causes eye irritation |
H330 | Fatal if inhaled |
H331 | Toxic if inhaled |
H332 | Harmful if inhaled |
H333 | May be harmful if inhaled |
H334 | May cause allergy or asthma symptoms or breathing difficulties if inhaled |
H335 | May cause respiratory irritation |
H336 | May cause drowsiness or dizziness |
H340 | May cause genetic defects |
H341 | Suspected of causing genetic defects |
H350 | May cause cancer |
H351 | Suspected of causing cancer |
H360 | May damage fertility or the unborn child |
H361 | Suspected of damaging fertility or the unborn child |
H361d | Suspected of damaging the unborn child |
H362 | May cause harm to breast-fed children |
H370 | Causes damage to organs |
H371 | May cause damage to organs |
H372 | Causes damage to organs through prolonged or repeated exposure |
H373 | May cause damage to organs through prolonged or repeated exposure |
Environmental hazards | |
Code | Phrase |
H400 | Very toxic to aquatic life |
H401 | Toxic to aquatic life |
H402 | Harmful to aquatic life |
H410 | Very toxic to aquatic life with long-lasting effects |
H411 | Toxic to aquatic life with long-lasting effects |
H412 | Harmful to aquatic life with long-lasting effects |
H413 | May cause long-lasting harmful effects to aquatic life |
H420 | Harms public health and the environment by destroying ozone in the upper atmosphere |
Sorry,this product has been discontinued.
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