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Chemical Structure| 30818-28-1 Chemical Structure| 30818-28-1

Structure of 30818-28-1

Chemical Structure| 30818-28-1

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Product Details of [ 30818-28-1 ]

CAS No. :30818-28-1
Formula : C7H4ClNO
M.W : 153.57
SMILES Code : N#CC1=CC=C(Cl)C=C1O
MDL No. :MFCD00234255
InChI Key :SMUWKRUWTDAYKS-UHFFFAOYSA-N
Pubchem ID :3442789

Safety of [ 30818-28-1 ]

GHS Pictogram:
Signal Word:Warning
Hazard Statements:H302-H315-H319-H335
Precautionary Statements:P261-P305+P351+P338

Computational Chemistry of [ 30818-28-1 ] Show Less

Physicochemical Properties

Num. heavy atoms 10
Num. arom. heavy atoms 6
Fraction Csp3 0.0
Num. rotatable bonds 0
Num. H-bond acceptors 2.0
Num. H-bond donors 1.0
Molar Refractivity 38.19
TPSA ?

Topological Polar Surface Area: Calculated from
Ertl P. et al. 2000 J. Med. Chem.

44.02 Ų

Lipophilicity

Log Po/w (iLOGP)?

iLOGP: in-house physics-based method implemented from
Daina A et al. 2014 J. Chem. Inf. Model.

1.55
Log Po/w (XLOGP3)?

XLOGP3: Atomistic and knowledge-based method calculated by
XLOGP program, version 3.2.2, courtesy of CCBG, Shanghai Institute of Organic Chemistry

2.7
Log Po/w (WLOGP)?

WLOGP: Atomistic method implemented from
Wildman SA and Crippen GM. 1999 J. Chem. Inf. Model.

1.92
Log Po/w (MLOGP)?

MLOGP: Topological method implemented from
Moriguchi I. et al. 1992 Chem. Pharm. Bull.
Moriguchi I. et al. 1994 Chem. Pharm. Bull.
Lipinski PA. et al. 2001 Adv. Drug. Deliv. Rev.

1.39
Log Po/w (SILICOS-IT)?

SILICOS-IT: Hybrid fragmental/topological method calculated by
FILTER-IT program, version 1.0.2, courtesy of SILICOS-IT, http://www.silicos-it.com

1.96
Consensus Log Po/w?

Consensus Log Po/w: Average of all five predictions

1.9

Water Solubility

Log S (ESOL):?

ESOL: Topological method implemented from
Delaney JS. 2004 J. Chem. Inf. Model.

-2.94
Solubility 0.177 mg/ml ; 0.00116 mol/l
Class?

Solubility class: Log S scale
Insoluble < -10 < Poorly < -6 < Moderately < -4 < Soluble < -2 Very < 0 < Highly

Soluble
Log S (Ali)?

Ali: Topological method implemented from
Ali J. et al. 2012 J. Chem. Inf. Model.

-3.28
Solubility 0.0811 mg/ml ; 0.000528 mol/l
Class?

Solubility class: Log S scale
Insoluble < -10 < Poorly < -6 < Moderately < -4 < Soluble < -2 Very < 0 < Highly

Soluble
Log S (SILICOS-IT)?

SILICOS-IT: Fragmental method calculated by
FILTER-IT program, version 1.0.2, courtesy of SILICOS-IT, http://www.silicos-it.com

-2.51
Solubility 0.477 mg/ml ; 0.0031 mol/l
Class?

Solubility class: Log S scale
Insoluble < -10 < Poorly < -6 < Moderately < -4 < Soluble < -2 Very < 0 < Highly

Soluble

Pharmacokinetics

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)
and tested on 415 molecules (test set)
10-fold CV: ACC=0.72 / AUC=0.77
External: ACC=0.88 / AUC=0.94

No
CYP1A2 inhibitor?

Cytochrome P450 1A2 inhibitor: SVM model built on 9145 molecules (training set)
and tested on 3000 molecules (test set)
10-fold CV: ACC=0.83 / AUC=0.90
External: ACC=0.84 / AUC=0.91

Yes
CYP2C19 inhibitor?

Cytochrome P450 2C19 inhibitor: SVM model built on 9272 molecules (training set)
and tested on 3000 molecules (test set)
10-fold CV: ACC=0.80 / AUC=0.86
External: ACC=0.80 / AUC=0.87

No
CYP2C9 inhibitor?

Cytochrome P450 2C9 inhibitor: SVM model built on 5940 molecules (training set)
and tested on 2075 molecules (test set)
10-fold CV: ACC=0.78 / AUC=0.85
External: ACC=0.71 / AUC=0.81

No
CYP2D6 inhibitor?

Cytochrome P450 2D6 inhibitor: SVM model built on 3664 molecules (training set)
and tested on 1068 molecules (test set)
10-fold CV: ACC=0.79 / AUC=0.85
External: ACC=0.81 / AUC=0.87

No
CYP3A4 inhibitor?

Cytochrome P450 3A4 inhibitor: SVM model built on 7518 molecules (training set)
and tested on 2579 molecules (test set)
10-fold CV: ACC=0.77 / AUC=0.85
External: ACC=0.78 / AUC=0.86

No
Log Kp (skin permeation)?

Skin permeation: QSPR model implemented from
Potts RO and Guy RH. 1992 Pharm. Res.

-5.32 cm/s

Druglikeness

Lipinski?

Lipinski (Pfizer) filter: implemented from
Lipinski CA. et al. 2001 Adv. Drug Deliv. Rev.
MW ≤ 500
MLOGP ≤ 4.15
N or O ≤ 10
NH or OH ≤ 5

0.0
Ghose?

Ghose filter: implemented from
Ghose AK. et al. 1999 J. Comb. Chem.
160 ≤ MW ≤ 480
-0.4 ≤ WLOGP ≤ 5.6
40 ≤ MR ≤ 130
20 ≤ atoms ≤ 70

None
Veber?

Veber (GSK) filter: implemented from
Veber DF. et al. 2002 J. Med. Chem.
Rotatable bonds ≤ 10
TPSA ≤ 140

0.0
Egan?

Egan (Pharmacia) filter: implemented from
Egan WJ. et al. 2000 J. Med. Chem.
WLOGP ≤ 5.88
TPSA ≤ 131.6

0.0
Muegge?

Muegge (Bayer) filter: implemented from
Muegge I. et al. 2001 J. Med. Chem.
200 ≤ MW ≤ 600
-2 ≤ XLOGP ≤ 5
TPSA ≤ 150
Num. rings ≤ 7
Num. carbon > 4
Num. heteroatoms > 1
Num. rotatable bonds ≤ 15
H-bond acc. ≤ 10
H-bond don. ≤ 5

1.0
Bioavailability Score?

Abbott Bioavailability Score: Probability of F > 10% in rat
implemented from
Martin YC. 2005 J. Med. Chem.

0.55

Medicinal Chemistry

PAINS?

Pan Assay Interference Structures: implemented from
Baell JB. & Holloway GA. 2010 J. Med. Chem.

0.0 alert
Brenk?

Structural Alert: implemented from
Brenk R. et al. 2008 ChemMedChem

0.0 alert: heavy_metal
Leadlikeness?

Leadlikeness: implemented from
Teague SJ. 1999 Angew. Chem. Int. Ed.
250 ≤ MW ≤ 350
XLOGP ≤ 3.5
Num. rotatable bonds ≤ 7

No; 1 violation:MW<1.0
Synthetic accessibility?

Synthetic accessibility score: from 1 (very easy) to 10 (very difficult)
based on 1024 fragmental contributions (FP2) modulated by size and complexity penaties,
trained on 12'782'590 molecules and tested on 40 external molecules (r2 = 0.94)

1.44

Application In Synthesis of [ 30818-28-1 ]

* 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.

  • Downstream synthetic route of [ 30818-28-1 ]

[ 30818-28-1 ] Synthesis Path-Downstream   1~35

  • 3
  • [ 28691-49-8 ]
  • furan-2,3,5(4H)-trione pyridine (1:1) [ No CAS ]
  • [ 30818-28-1 ]
  • 4
  • [ 50620-09-2 ]
  • furan-2,3,5(4H)-trione pyridine (1:1) [ No CAS ]
  • [ 30818-28-1 ]
  • 5
  • [ 30818-28-1 ]
  • [ 52112-68-2 ]
  • 6
  • [ 67843-74-7 ]
  • [ 30818-28-1 ]
  • [ 203259-31-8 ]
  • 7
  • [ 51594-55-9 ]
  • [ 30818-28-1 ]
  • [ 133715-45-4 ]
  • 8
  • [ 30818-28-1 ]
  • [ 115314-14-2 ]
  • [ 133715-45-4 ]
  • [ 203259-31-8 ]
  • 9
  • [ 203259-52-3 ]
  • [ 30818-28-1 ]
  • 10
  • ethyl α-hydroxyimino-2,4-dichlorophenylacetate [ No CAS ]
  • [ 30818-28-1 ]
  • 11
  • [ 30818-28-1 ]
  • [ 23788-74-1 ]
  • [ 203259-53-4 ]
  • 13
  • 6-chloro-indoxazene-carboxylic acid-(3) [ No CAS ]
  • [ 30818-28-1 ]
  • 14
  • 6-chlorobenzo[d]oxazole [ No CAS ]
  • [ 30818-28-1 ]
  • 15
  • [ 30818-28-1 ]
  • [ 203259-54-5 ]
  • 16
  • [ 30818-28-1 ]
  • [ 203259-55-6 ]
  • 17
  • [ 30818-28-1 ]
  • [ 133715-45-4 ]
  • 18
  • [ 30818-28-1 ]
  • [ 203259-31-8 ]
  • 21
  • [ 30818-28-1 ]
  • 4-Chloro-2-((S)-3-{1,1-dimethyl-2-[4-((R)-4-methyl-6-oxo-1,4,5,6-tetrahydro-pyridazin-3-yl)-phenylamino]-ethylamino}-2-hydroxy-propoxy)-benzonitrile [ No CAS ]
  • 22
  • [ 30818-28-1 ]
  • 4-Chloro-2-((S)-3-{1,1-dimethyl-2-[4-((S)-4-methyl-6-oxo-1,4,5,6-tetrahydro-pyridazin-3-yl)-phenylamino]-ethylamino}-2-hydroxy-propoxy)-benzonitrile [ No CAS ]
  • 23
  • [ 30818-28-1 ]
  • 4-Chloro-2-((R)-3-{1,1-dimethyl-2-[4-((R)-4-methyl-6-oxo-1,4,5,6-tetrahydro-pyridazin-3-yl)-phenylamino]-ethylamino}-2-hydroxy-propoxy)-benzonitrile [ No CAS ]
  • 24
  • [ 30818-28-1 ]
  • 4-Chloro-2-((R)-3-{1,1-dimethyl-2-[4-((S)-4-methyl-6-oxo-1,4,5,6-tetrahydro-pyridazin-3-yl)-phenylamino]-ethylamino}-2-hydroxy-propoxy)-benzonitrile [ No CAS ]
  • 25
  • (E)-ethyl α-hydroxyimino-2,4-dichlorophenylacetate [ No CAS ]
  • [ 30818-28-1 ]
  • 26
  • [ 30818-28-1 ]
  • [ 1972-28-7 ]
  • [ 357405-67-5 ]
YieldReaction ConditionsOperation in experiment
43% With triphenylphosphine; In tetrahydrofuran; b [3-(5-Chloro-2-cyanophenoxy)-3-(2-thiazolyl)propyl]methylcarbamic acid 1,1-dimethylethyl ester The product from step (a) (312 mg, 1.15 mmol), 2-hydroxy-4-chlorobenzonitrile (176 mg, 1.15 mmol) and triphenylphosphine (330 mg, 1.26 mmol) were dissolved in anhydrous tetrahydrofuran (20 ml) and the solution cooled to 0° C. Diethyl azodicarboxylate (219 mg, 1.26 mmol) was added dropwise and the solution allowed to warm to room temperature slowly and stirred for 18 h. The solvent was removed in vacuo and the residue chromatographed on flash silica, eluding with hexane:ethyl acetate (1:1) to give the title compound (200 mg, 43percent). 1H NMR 300 MHz (CDCl3) 7.79 (1H, d), 7.34-7.53 (2H, m), 6.92-7.09 (2H, m), 5.61 -5.71 (1H, m), 3.52-3.74 (1H, m), 3.31-3.45 (1H, m), 2.91 (3H, s), 2.82-2.92 (1H, m), 2.24-2.48 (1H, m), 1.40 (9H, s).
  • 27
  • [ 30818-28-1 ]
  • [ 100306-34-1 ]
  • [ 1972-28-7 ]
  • [ 357404-43-4 ]
YieldReaction ConditionsOperation in experiment
72% With triphenylphosphine; In tetrahydrofuran; toluene; a 4-Chloro-2-[(1R)-3-chloro-1-phenylpropyl]oxy}benzonitrile (S)-alpha-(2-Chloroethyl)benzenemethanol (170 mg, 1.0 mmol), <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong> (154 mg, 1.0 mmol.) and triphenylphosphine (260 mg, 1.0 mmol.) in dry tetrahydrofuran (5 ml) were stirred in an ice bath under nitrogen whilst diethyl azodicarboxylate (0.16 ml, 1.0 mmol.) was added. The reaction mixture was allowed to warn to room temperature and stirred for 3 days. The solvent was evaporated and the residue dissolved in toluene, added to the top of a flash chromatography column and eluted with 10percent ether/isohexane to give the product (220 mg, 72percent) as a viscous oil. 1H NMR 300 MHz (CDCl3) 7.21 (1H, d), 7.24-7.33 (5H, m), 6.92 (1H, d of d), 6.75 (1H, d), 5.43 (1H, m), 3.80 (1H, m), 3.56 (1H, m), 2.50 (1H, m), 2.18 (1H, m).
  • 28
  • [ 30818-28-1 ]
  • [ 164071-56-1 ]
  • [ 357405-45-9 ]
YieldReaction ConditionsOperation in experiment
61% a 4-Chloro-2-[[(1R)-3-chloro-1-(2-thienyl)propyl]oxy]benzonitrile Using <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong> (303 mg, 1.97 mmol) and (S)-alpha-(2-chloroethyl) thiophenemethanol (349 mg, 1.97 mmol), and the procedure described in Example 5(a), the title compound was prepared as a white crystalline solid (373 mg, 61percent). 1H NMR300 MHz (CDCl3) 7.48-7.45 (1H,d), 7.33-7.31 (1H,dd), 7.14-7.13 (1H,m), 7.03-6.97 (3H,m), 5.82-5.77 (1H,q), 3.91-3.83 (1H,m), 3.67-3.59 (1H,m), 2.70-2.63 (1H,m), 2.42-2.33 (1H,m).
  • 29
  • [ 357405-26-6 ]
  • [ 30818-28-1 ]
  • [ 357405-28-8 ]
YieldReaction ConditionsOperation in experiment
c [3-(6-Bromo-3-pyridinyl)-3-(5-chloro-2-cyanophenoxy)propyl]carbamic acid 1,1-dimethylethyl ester The sub-title compound was prepared from the product of Example 65(b) and <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong> by the method of Example 60(a). 1H NMR 300 MHz (CDCl3) 8.40 (1H, d), 7.65 (1H, dd), 7.55-7.41 (1H, m), 7.33 (1H, d), 7.06-6.93 (1H, m), 6.80 (1H, d), 5.38 (1H, dd), 4.84 (1H, s), 3.45-3.28 (2H, m), 2.36-2.03 (2H, m), 1.44 (9H, s).
  • 30
  • [ 357405-33-5 ]
  • [ 30818-28-1 ]
  • [ 357405-35-7 ]
YieldReaction ConditionsOperation in experiment
d 4-Chloro-2-[3-chloro-1-(5-isoxazolyl)propoxy]-benzonitrile Prepared by the method of Example 8(a) using alpha-(2-chloroethyl)-5-isoxazolemethanol and <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong>. 1H NMR 300 MHz (CDCl3) 8.26 (1H, d), 7.52 (1H, dd), 7.09 (1H, dt), 7.02 (1H, s), 6.36 (1H, t), 5.82-5.74 (1H, m), 3.95-3.84 (1H, m), 3.81-3.70 (1H, m), 2.75-2.61 (1H, m), 2.54-2.40 (1H, m).
  • 31
  • [ 30818-28-1 ]
  • [ 1972-28-7 ]
  • [ 357443-71-1 ]
YieldReaction ConditionsOperation in experiment
With triphenylphosphine; In tetrahydrofuran; c 4-Chloro-2-[4-[[(1,1-dimethylethyl)dimethylsilyl]oxy]-1-(3-furanyl)butoxy]benzonitrile The product from step (b) (1.33 g, 4.9 mmol), <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong> (0.753 g, 4.9 mmol), triphenylphosphine (1.35 g, 5.15 mmol), diethyl azodicarboxylate (0.89 g, 5.15 mmol) and tetrahydrofuran (50 ml) were used to prepare the title compound via the method described in Example 26 step (c). The product was a colourless oil (1.27 g, 64percent). 1H NMR 300 MHz (CDCl3) 7.47-7.39 (3H, m), 6.97-6.94 (2H, m), 6.42 (1H, s), 5.32 (1H, t), 3.67 (2H, t), 2.15-1.96 (2H, m), 1.73-1.63 (2H, m), 0.88 (9H, s), 0.04 (6H, s).
  • 32
  • [ 30818-28-1 ]
  • [ 1972-28-7 ]
  • [ 357443-74-4 ]
YieldReaction ConditionsOperation in experiment
With triphenylphosphine; In tetrahydrofuran; c 4-Chloro-2-[4-[[(1,1-dimethylethyl)dimethylsilyl]oxy]-1-(2-furanyl)butoxy]benzonitrile The product from step (b) (1.52 g, 5.6 mmol), <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong> (0.86 g, 5.6 mmol), triphenylphosphine (1.54 g, 5.9 mmol), diethyl azodicarboxylate (1.02 g, 5.9 mmol) and tetrahydrofuran (50 ml) were used to prepare the sub-title compound using the method described in Example 26 step (c). The product was a colourless oil (1.32 g, 58percent). 1H NMR 300 MHz (CDCl3) 7.46-7.40 (2H, m), 7.04 (1H, s), 6.97 (1H, dd), 6.35 (2H, s), 5.32 (1H, t), 3.71-3.65 (2H, m), 2.26-2.11 (2H, m), 1.74-1.64 (2H, m), 0.88 (9H, s), 0.04 (6H, s).
  • 33
  • [ 357416-57-0 ]
  • [ 30818-28-1 ]
  • [3-(5-Chloro-2-cyanophenoxy)-5-methylhexyl]methylcarbamic Acid [ No CAS ]
YieldReaction ConditionsOperation in experiment
a [3-(5-Chloro-2-cyanophenoxy)-5-methylhexyl]methylcarbamic Acid 1 1-dimethylethyl Ester The title compound was prepared according to the method of Example 2 step (b) but using <strong>[30818-28-1]4-chloro-2-hydroxybenzonitrile</strong> and (3-hydroxy-5-methylhexyl)methylcarbamic acid, 1,1-dimethylethyl ester. MS APCI+ve m/z 281 ([M+H-Boc]+).
  • 34
  • aqueous potassium bisulfate [ No CAS ]
  • [ 30818-28-1 ]
  • [ 142167-37-1 ]
YieldReaction ConditionsOperation in experiment
With bromine; sodium acetate; In methanol; ethyl acetate; REFERENCE EXAMPLE 8 Methanol (100 ml) was added to sodium acetate (1.97 g) and <strong>[30818-28-1]5-chloro-2-cyanophenol</strong> (1.84 g, mp. 155°-157° C.) which was synthesised according to a known method. The mixture was allowed to cool to -78° C., and to the solution was added dropwise a solution of bromine (1.53 g) in methanol (25 ml). After stirring at -78° C. for 30 minutes, the solvent was distilled off under reduced pressure, and ethyl acetate and aqueous potassium bisulfate solution were added to the residue. The ethyl acetate layer was washed with saturated saline solution, dried over anhydrous magnesium sulfate and the solvent was distilled off. The residue was purified by column chromatography on silica gel eluding with ethyl acetate/hexane to obtain 4-bromo-<strong>[30818-28-1]5-chloro-2-cyanophenol</strong> (0.53 g, mp. 229°-231° C. (dec.)).
  • 35
  • [ 556-64-9 ]
  • [ 108-43-0 ]
  • [ 30818-28-1 ]
YieldReaction ConditionsOperation in experiment
To a solution of 3-chlorophenol(2.86mL) in dichloroethane (48mL) were added aluminum chloride (4.00g) and boron tribromide (3.39mL) under ice-cooling, and methyl thiocyanate (2.46mL) was added to the reaction mixture, and stirred at room temperature until aluminum chloride was dissolved. Then, the reaction mixture was stirred and heated at 120°C for 20 hours. After cooling, a 4mol/L aqueous solution of sodium hydroxide (99mL) was added to the reaction mixture, and the mixture was stirred at approximately 80° C for 30 minutes. The solution was washed with dichloromethane. The aqueous layer was acidified with 6mol/L hydrochloric acid , and extracted with diethyl ether. The organic layer was washed with brine and dried over anhydrous magnesium sulfate. The organic solvent was concentrated under reduced pressure. The residue was treated with hexane and collected by filtration to give the title compound (2.5g). 1H-NMR (CDCl3) delta ppm: 6.99 (1H, dd, J=1.8, 8.5Hz), 7.03 (1H, d, J=1.8Hz), 7.44 (1H, d, J=8.5Hz)
 

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Technical Information

Categories

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