CN102633684A - Pyrethroid compound, preparation method and application thereof - Google Patents

Pyrethroid compound, preparation method and application thereof Download PDF

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Publication number
CN102633684A
CN102633684A CN2012100645356A CN201210064535A CN102633684A CN 102633684 A CN102633684 A CN 102633684A CN 2012100645356 A CN2012100645356 A CN 2012100645356A CN 201210064535 A CN201210064535 A CN 201210064535A CN 102633684 A CN102633684 A CN 102633684A
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compound
formula
mosquito
preparation
mixture
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CN102633684B (en
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戚明珠
周景梅
姜友法
朱萍
王东朝
杨建文
孙鹏
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Jiangsu Yangnong Chemical Co Ltd
Youth Chemical Co Ltd
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Jiangsu Yangnong Chemical Co Ltd
Youth Chemical Co Ltd
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Abstract

The invention relates to a pyrethroid compound shown in a general formula (A), or stereochemistry isomers of the pyrethroid compound, or a mixture of the stereochemistry isomers, a preparation method of the compounds, and the application of the compounds in hygienic insecticide products. In the formula (A), R is F atom or H atom, and Z is cyanogroup (-CH) or H atom. The experiment proves that the compound has good control effect for sanitary insect pests such as mosquitoes, flies, german cockroaches and the like.

Description

A kind of pyrethroid compound
The application is to be that March 4, application number in 2009 are 200910118875.0, denomination of invention is divided an application for " a kind of pyrethroid compound " the applying date.
Technical field
The present invention relates to pyrethroid compound, relate in particular to a kind of compound that meets following formula (A), or its three-dimensional chemical isomer, or the mixture of these steric isomers with and preparation method thereof with the application in control sanitary insect pest field.
Figure BDA0000142893270000011
(in the formula: R is F atom or H atom, Z be cyanic acid (CN) or the H atom.)
Background technology
Pyrethroid coumpound can be used to prevent and treat mosquito, and has higher insecticidal activity, and this is widely known by the people.Because it has efficiently, low toxicity, low residue, environment compatibility are good, obtained application widely in the prevention and control field of sanitary insect pest.But growth along with duration of service; Mosquitos and flies has produced certain resistance (Gao Xiwu etc. to some traditional pyrethroid products (like esbiothrin) etc.; Chinese media biology and control magazine, 2004,15 (2); 105) the former dose of pyrethroid that, needs in products such as mosquito-repellent incense or aerosol, to add for control effect same before reaching has increased greatly.This has not only improved production cost, has also increased the weight of environmental pressure.
The present invention has formed the fluorine-containing pyrethroid compound of a series of novelties through the structure of modification to traditional pyrethroid acid, alcohol moiety.The preliminary test of pesticide effectiveness of these compounds shows to have excellent insecticidal activity, knocks down soon, and lethality rate is high, and the vp height can be stablized at normal temperatures and continue volatilization, is fit to the production health and uses the pesticide preparation product.Owing to the introducing of fluorine element, also greatly reduce the resistance risk of insect simultaneously.
Summary of the invention
The object of the invention just provides a kind of pyrethroid compound of novelty, and the application on sanitary insect pests such as control mosquito, fly, Groton bug.The objective of the invention is to realize through following technical scheme:
The pyrethroid compound that provides with general formula (A):
Figure BDA0000142893270000021
Wherein: R is F atom or H atom, Z be cyanic acid (CN) or the H atom.
Work as R=F, Z=-CN is compound (1): alpha-cyano-3-phenoxy-4-fluoro-benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound;
Work as R=H, Z=-CN is compound (2): alpha-cyano-3-phenoxy benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound;
Figure BDA0000142893270000023
Work as R=F, Z=H is compound (3): 3-phenoxy-4-fluoro-benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound;
Figure BDA0000142893270000024
Work as R=H, Z=H is compound (4): 3-phenoxy benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound.
Figure BDA0000142893270000025
When R1 is R=F, Z=-CN and chrysanthemumic acid during partly for the trans individual isomer of dextrorotation be compound alpha-cyano-3-phenoxy-4-fluoro-benzyl-(1R, 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound; When R1 is R=H, Z=-CN and chrysanthemumic acid during partly for the trans individual isomer of dextrorotation be compound alpha-cyano-3-phenoxy benzyl-(1R, 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound.
Compound according to the invention comprises pyrethroid compound or its three-dimensional chemical isomer that provides with general formula (A), or the mixture of these steric isomers.
The preparation method that the present invention also provides said structure to satisfy the compound of formula (A), with reference to CN1303846A, the preparation method of chrysanthemum ester compound among the CN101100445A, The compounds of this invention (A) can be prepared by following steps:
With structural formula be chrysanthemumic acid acyl chlorides and the structural formula of (X) the aldehyde esterification in the presence of NaCN for (Z) prepares with structural formula for the chrysanthemumic acid acyl chlorides of (X) with structural formula for the pure direct esterification of (Y) or preparation, the definition of R is the same in the formula.
Figure BDA0000142893270000031
Esterification can be carried out at organic solvents such as toluene, YLENE, hexanaphthenes, and the mol ratio of chrysanthemumic acid acyl chlorides and alcohol or aldehyde is 0.8: 1-1.5: 1, and the mol ratio of aldehyde and NaCN is 1: 1, adds pyridine in the reaction as acid binding agent, temperature of reaction 0-25 ℃.
The present invention also provides described compound in the application of remove killing aspect the sanitary insect pests such as mosquito, fly or Groton bug.
The above-mentioned application of said compound be with said compound (A) as former medicine, be prepared into various forms of sterilants, be used for remove killing mosquito, fly or Groton bug.
Said various forms of sterilant comprises disc type insecticidal incense, electric mosquito repellent tablet, electric liquid device or insect aerosol etc.
Below said structure is satisfied (A) The compounds of this invention be that the application of former medicine in preparation various forms sterilant is described in detail:
(1) preparation disc type insecticidal incense
Described disc type insecticidal incense is mixed with compound of the present invention to join behind the liquid form and processes in the base material, and wherein the content of The compounds of this invention is 0.005-3.0w/w%.
The liquid form that compound according to the invention is mixed with is missible oil or is the solution of solvent with kerosene.
Said missible oil can be sprayed onto on the base material (fragrant base), forms the disc type insecticidal incense of the The compounds of this invention that contains above-mentioned concentration, then oven dry.Also contain tensio-active agent and other auxiliary agents in the said missible oil; The instance of said tensio-active agent comprises one or more mixtures in alkyl-sulphate, AS, alkylaryl sulphonate, polyoxyalkylene alkyl, polyoxyalkylene alkyl aryl ether, polyoxyalkylene styryl phenyl ether, polyol ethers or the sugar alcohol derivant; The instance of said other auxiliary agents comprises one or more the mixture in perfume compound, tinting material or the sterilant.
The base material of said disc type insecticidal incense is made up of one or more inflammable substances and one or more tackiness agents, and wherein the weight ratio of inflammable substance and tackiness agent is 90: 10 to 99.9: 0.1.The instance of inflammable substance comprises the plant drymeal that is selected from wood powder, pyrethrum extraction powder, citrus peel meal, palm oil-bound distemper, coconut shell powder or walnut parting, or is selected from the carbon dust of wood charcoal powder, activity charcoal powder or coal dust, or their mixture; The instance of tackiness agent comprises the polymkeric substance of starch, casein, methylcellulose gum, CMC 99.5 or Z 150PH of being selected from tapioca(flour), W-Gum or wheat starch and composition thereof.
Said disc type insecticidal incense base material normally through mixing inflammable substance and tackiness agent, is mediated with water, moulding and oven dry preparation.The shape of coiled mosquito-repellent incense base material is restriction not, can be plate-like or strip.The present invention uses about 12cm of diameter and the thickness conventional coil shape base material as 3-5mm usually in two line spices of a cover.
The disc type insecticidal incense that more than obtains can ordinary method be used.That is, light disc type insecticidal incense of the present invention near (for example dwelling house, office, stock barn) or its in the habitat of insect.The burning of disc type insecticidal incense can make the ester cpds volatilization of formula (A); After airborne effective constituent reaches certain concentration; To mosquito, fly, sanitary insect pests such as Groton bug produce to be stimulated, drives, benumbs, knocks down and lethal effect; Thereby reach mosquito, fly, the control of sanitary insect pests such as Groton bug.
(2) preparation electric mosquito repellent tablet
Said electric mosquito repellent tablet is the solution that contains The compounds of this invention to be dripped and/or is coated on the porosity base material make, and the content of The compounds of this invention is the 0.1-20mg/ sheet in the said anti-mosquito incense sheet.Also contain the additive that is selected from inhibitor, stifling regulator, spices or dyestuff in the said solution that contains compound (A).
The instance of the porous substrate of said electric mosquito repellent tablet comprises paper pulp, asbestos, synthetic porous resin, porous, inorganic powder, spun glass, sulphur thing powder or porous ceramic material; Said porous substrate is long 30-35mm, wide 20-22mm, the sheet of thick 1.5-2mm.An example that is used for porous pad of the present invention is the sheet of paper pulp fiber that contains cotton fibre and 50% weight of 50% weight, sees from absorptivity and the viewpoint that keeps insecticidal active ingredient, preferably uses the natural fiber material film-making.
When using electric mosquito repellent tablet of the present invention near (for example dwelling house, office, stock barn) or its in the habitat of insect, through the certain temperature of electric heating panel control, the medicine that floods in the sheet just begin slowly wave diffusing.After spatial effective constituent reaches certain concentration, just can be to mosquito, fly, sanitary insect pests such as Groton bug produce to be stimulated, drives, benumbs, knocks down and lethal effect, thereby reaches mosquito, fly, the control of sanitary insect pests such as Groton bug.
(3) preparation electric liquid device
Said electric liquid device is that The compounds of this invention is dissolved in the aliphatic hydrocarbon, adds the inhibitor of 0.1-0.5% then, and 0.1-1% spices is mixed with the solution that contains 0.1-2% compound of the present invention and obtains; The aliphatic hydrocarbon of the preferred C14 component of said aliphatic hydrocarbon.
Electric liquid device liquid is through the wicking action of plug, takes mosquito-repellent incense liquid the top of plug to from the bottom of plug, under the electrically heated effect of ring heater; After making spatial effective constituent reach certain concentration; Just can be to mosquito, fly, sanitary insect pests such as Groton bug produce to be stimulated, drives, benumbs, knocks down and lethal effect; Thereby reach mosquito, fly, the control of sanitary insect pests such as Groton bug.
(4) preparation insect aerosol
Said insect aerosol be with compound of the present invention, kerosene and synergistic agent, perfume compound, the sterilant according to circumstances selected under room temperature or heating condition, mixes one of the compsn adding of getting up be equipped with a valve jar in; And under pressure, in jar, add propelling agent through this valve and make, the content of The compounds of this invention is 0.001-0.5w/w% in the final composition; Said propelling agent accounts for the 20-60% of composition total weight; Preferred LPG liquefied petroleum gas, third butane, dme or pressurized air, further preferred third butane.
When insect aerosol of the present invention was used in the habitat of insect, by-pass valve control was opened, under the pressure effect of propelling agent; Produce high velocity air, jar is included the soup aerosol dispersion of effective constituent and the gasification of propelling agent, the small liquid pearl that contains effective insecticidal constituent of formation is suspended in the air; With mosquito; Fly, sanitary insect pests such as Groton bug contact, and reach the purpose of quick kill pests.
Based on above-mentioned achievement in research, the present invention proposes compound of the present invention and killing mosquito, fly, the application of sanitary insect pest aspects such as Groton bug, and concrete application mode has been proposed.Through experiment, proved compound according to the invention and housefly, culex pipiens pollens, Groton bug etc. have been had remarkable prevention effect with its various sterilants for former medicine preparation.
Embodiment
Below with form illustrated in detail technical scheme of the present invention and the effect of embodiment, but the present invention is not limited to following examples.
Preparation embodiment 1: compound (1) alpha-cyano-3-phenoxy-4-fluoro-benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound synthetic
In the four-hole bottle of a 200ml, drop into 4-fluoro-3-phenoxy benzaldehyde 10.8g (0.05mol), pyridine 5g; Be dissolved in the 80ml hexanaphthene; Be added dropwise to the saturated aqueous solution that contains 2.45g (0.05mol) NaCN, throw to finish stir 10min, 10-20 ℃ slowly drips 2 in following 2 hours; 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropane carboxylic acid isoxazolecarboxylic acid 13.6g (0.06mol) drips 30 ℃ of reactions of Bi Shengzhi 4 hours.Organic phase successively with each washing of 50ml 5% sodium hydroxide solution, 5% hydrochloric acid and saturated aqueous common salt once; Divide oil-yielding stratum under the 10mmHg negative pressure, to be heated to 100 ℃ and purify solvent; Obtain compound alpha-cyano-3-phenoxy-4-fluoro-benzyl-2; 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound 20.2, content 94.3%, yield 88.1% (in aldehyde).The molecular formula of this compound: C 23H 18F 4NO 3, molecular weight: 432.4, nuclear magnetic resonance spectrum ( 1H (ppm) CDCl 3) 5.93 (m, 1H); 5.70 (m, 1H) 1.11 (m, 6H, ring-CH 3); 1.06-1.51 (m, 2H, on the chrysanthemumic acid ring-H); (6.25 s, 1H, benzyl α H); 6.83-6.89 (m, 3H); 6.92-7.22 (m, 5H).
Preparation embodiment 2: compound (2) alpha-cyano-3-phenoxy benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound synthetic
In the four-hole bottle of a 200ml, drop into 3-phenoxy benzaldehyde 9.9g (0.05mol), pyridine 5g; Be dissolved in the 80ml hexanaphthene, be added dropwise to the saturated aqueous solution that contains 2.45g (0.05mol) NaCN, add the 0.5g Tetrabutyl amonium bromide again; Throw to finish and stir 10min; 10-20 ℃ slowly drips 2 in following 2 hours, and 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropane carboxylic acid isoxazolecarboxylic acid 13.6g (0.06mol) drips 30 ℃ of reactions of Bi Shengzhi 4 hours.Organic phase successively with each washing of 50ml 5% sodium hydroxide solution, 5% hydrochloric acid and saturated aqueous common salt once; Divide oil-yielding stratum under the 10mmHg negative pressure, to be heated to 100 ℃ and purify solvent; Obtain compound alpha-cyano-3-phenoxy benzyl-2; 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound 19.85, content 95.2%, yield 90.0% (in aldehyde).The molecular formula of this compound: C 23H 19F 3NO 3, molecular weight: 414.4, nuclear magnetic resonance spectrum ( 1H (ppm) CDCl 3) 5.93 (m, 1H); 5.70 (m, 1H) 1.11 (m, 6H, ring-CH 3); 1.06-1.51 (m, 2H, on the chrysanthemumic acid ring-H); (6.25 s, 1H, benzyl α H); 6.85-7.15 (m, 4H); 6.92-7.22 (m, 5H).
Preparation embodiment 3: compound (3) 3-phenoxy-4-fluoro-benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound synthetic
In the four-hole bottle of a 200ml; Drop into 4-fluoro-3-phenoxy benzenemethanol 10.9g (0.05mol), pyridine 5g is dissolved in 80ml toluene; Throw to finish and stir; 10-20 ℃ slowly drips 2 in following 2 hours, and 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropane carboxylic acid isoxazolecarboxylic acid 13.6g (0.06mol) drips 30 ℃ of reactions of Bi Shengzhi 4 hours.Organic phase successively with each washing of 50ml 5% sodium hydroxide solution, 5% hydrochloric acid and saturated aqueous common salt once; Divide oil-yielding stratum under the 10mmHg negative pressure, to be heated to 100 ℃ and purify solvent toluene; Obtain compound 3-phenoxy-4-fluoro-benzyl-2; 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound 18.82, content 96.9%, yield 89.9% (in aldehyde).The molecular formula of this compound: C 22H 20F 4O 3, molecular weight: 408.3, nuclear magnetic resonance spectrum ( 1H (ppm) CDCl 3) 5.93 (m, 1H); 5.70 (m, 1H) 1.11 (m, 6H, ring-CH 3); 1.06-1.51 (m, 2H, on the chrysanthemumic acid ring-H); (5.34 s, 2H, benzyl α H); 6.83-6.89 (m, 3H); 6.92-7.22 (m, 5H).
Preparation embodiment 4: compound (4) 3-phenoxy benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound synthetic
In the four-hole bottle of a 200ml; Drop into 3-phenoxy benzenemethanol 10.2g (0.05mol), pyridine 5g is dissolved in 80ml toluene; Throw to finish and stir; 10-20 ℃ slowly drips 2 in following 2 hours, and 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropane carboxylic acid isoxazolecarboxylic acid 13.6g (0.06mol) drips 30 ℃ of reactions of Bi Shengzhi 4 hours.Organic phase successively with each washing of 50ml 5% sodium hydroxide solution, 5% hydrochloric acid and saturated aqueous common salt once; Divide oil-yielding stratum under the 10mmHg negative pressure, to be heated to 100 ℃ and purify solvent toluene; Obtain compound 3-phenoxy benzyl-2; 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound 18.45, content 97.3%, yield 91.9% (in aldehyde).The molecular formula of this compound: C 22H 21F 3O 3, molecular weight: 390.4, nuclear magnetic resonance spectrum ( 1H (ppm) CDCl 3) 5.93 (m, 1H); 5.70 (m, 1H) 1.11 (m, 6H, ring-CH 3); 1.06-1.51 (m, 2H, on the chrysanthemumic acid ring-H); (5.34 s, 2H, benzyl α H); 6.85-7.15 (m, 4H); 6.92-7.22 (m, 5H).
Preparation embodiment 5: compound (5) alpha-cyano-3-phenoxy-4-fluoro-benzyl-(1R, 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound synthetic
In the four-hole bottle of a 200ml, drop into 4-fluoro-3-phenoxy benzaldehyde 10.8g (0.05mol), pyridine 5g; Be dissolved in the 80ml hexanaphthene, be added dropwise to the saturated aqueous solution that contains 2.45g (0.05mol) NaCN, throw to finish and stir 10min; 10-20 ℃ slowly drips (1R in following 2 hours; 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropane carboxylic acid isoxazolecarboxylic acid 13.6g (0.06mol) drips 30 ℃ of reactions of Bi Shengzhi 4 hours.Organic phase successively with each washing of 50ml 5% sodium hydroxide solution, 5% hydrochloric acid and saturated aqueous common salt once; Divide oil-yielding stratum under the 10mmHg negative pressure, to be heated to 100 ℃ and purify solvent; Obtain compound alpha-cyano-3-phenoxy-4-fluoro-benzyl-(1R, 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound 19.9; Content 94.9%, yield 88.3% (in aldehyde).The molecular formula of this compound: C 23H 18F 4NO 3, molecular weight: 432.4, nuclear magnetic resonance spectrum ( 1H (ppm) CDCl 3) 5.93 (m, 1H); 5.70 (m, 1H) 1.11 (m, 6H, ring-CH 3); 1.06-1.51 (m, 2H, on the chrysanthemumic acid ring-H); (6.25 s, 1H, benzyl α H); 6.83-6.89 (m, 3H); 6.92-7.22 (m, 5H), ee value 90%.
Preparation embodiment 6: compound (6) alpha-cyano-3-phenoxy benzyl-(1R, 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound synthetic
In the four-hole bottle of a 200ml, drop into 3-phenoxy benzaldehyde 9.9g (0.05mol), pyridine 5g; Be dissolved in the 80ml hexanaphthene, be added dropwise to the saturated aqueous solution that contains 2.45g (0.05mol) NaCN, add the 0.5g Tetrabutyl amonium bromide again; Throw to finish stir 10min, 10-20 ℃ slowly drip in following 2 hours (1R, 3S)-2; 2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropane carboxylic acid isoxazolecarboxylic acid 13.6g (0.06mol) drips 30 ℃ of reactions of Bi Shengzhi 4 hours.Organic phase successively with each washing of 50ml 5% sodium hydroxide solution, 5% hydrochloric acid and saturated aqueous common salt once; Divide oil-yielding stratum under the 10mmHg negative pressure, to be heated to 100 ℃ and purify solvent; Obtain compound alpha-cyano-3-phenoxy benzyl-(1R, 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound 19.33; Content 94.8%, yield 89.2% (in aldehyde).The molecular formula of this compound: C 23H 19F 3NO 3, molecular weight: 414.4, nuclear magnetic resonance spectrum ( 1H (ppm) CDCl 3) 5.93 (m, 1H); 5.70 (m, 1H) 1.11 (m, 6H, ring-CH 3); 1.06-1.51 (m, 2H, on the chrysanthemumic acid ring-H); (6.25 s, 1H, benzyl α H); 6.85-7.15 (m, 4H); 6.92-7.22 (m, 5H), ee value 90%.
Application implementation example 1
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation compound (1) in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense I of 0.04w/w% compound (1) to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Application implementation example 2
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation compound (2) in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense II of 0.04w/w% compound (2) to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Application implementation example 3
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation compound (3) in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense III of 0.04w/w% compound (3) to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Application implementation example 4
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation compound (4) in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense IV of 0.04w/w% compound (4) to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Application implementation example 5
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation compound (5) in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense V of 0.04w/w% compound (5) to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Application implementation example 6
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation compound (6) in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense VI of 0.04w/w% compound (6) to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Reference implementation example 1
In the mixture of W-Gum, carbon dust and the wood powder (1: 5: 4) of 99.96 weight parts, add the water of 120 weight parts and mediate and be shaped, oven dry forms plate-like insecticidal incense base material (diameter 12.0cm, thick 4mm, a counterweight 40g) then.
On the other hand, the 0.8w/v% solution of preparation tetrafluoro in kerosene.
On this cover incense coil base material,, at room temperature place then and had the disc type insecticidal incense VII of 0.04w/w% tetrafluoro to obtain a cover in 3 hours with the above-mentioned solution of the even Dropwise 5 ml of micro-syringe.
Give birth to and survey embodiment 1
With application implementation example 1-6, the disc type insecticidal incense of reference implementation example 1 is carried out kill mosquito evaluation of pesticide effectiveness contrast according to GB13917.4-92, and the examination worm is a culex pipiens pollens, and the 2-3 days female mosquitos of not sucking blood in back sprout wings; Detailed process is to draw 20 examination mosquitos with mosquito sucking tube, puts into airtight drum test set, appoints and gets one section of mosquito-repellent incense to be tested; Put to fragrant frame; Light timing, remove mosquito-repellent incense behind the 1min, write down down and out examination mosquito number at set intervals; To all supply to try in the dependent insect cage that mosquito is transferred to cleaning the dead examination of inspection mosquito number behind the 24h behind the 20min.
Experimental result is seen table 1:
The comparison of table 1. The compounds of this invention and control compounds effect exterminating mosquito
Mosquito-repellent incense Effective constituent Concentration w/w% KT50(min) 24h mortality ratio (%)
The mosquito-repellent incense I Compound (1) 0.04 6.65 ?100
The mosquito-repellent incense II Compound (2) 0.04 8.55 ?90
The mosquito-repellent incense III Compound (3) 0.04 10.25 ?80
The mosquito-repellent incense IV Compound (4) 0.04 12.33 ?75
The mosquito-repellent incense V Compound (5) 0.04 5.03 ?100
The mosquito-repellent incense VI Compound (6) 0.04 8.12 ?95
The mosquito-repellent incense VII Tetrafluoro 0.04 8.47 ?95
The result shows that the relative effectivenes of compound (1) is at 1.3 times of tetrafluoro, and the relative effectivenes of the compound of individual isomer (5) is more at more than 1.8 times of tetrafluoro.
Application implementation example 7
With containing 1mg compound (1), the long 35mm of preparation dipping of 15mg BHT (2,6 di tert butyl 4 methyl phenol) and 0.5mg dyestuff; Wide 22mm, the porous pad of thick 2mm (cotton fibre: 50% weight percent, paper pulp fiber: 50% weight percent); Room temperature held 3 days makes electric mosquito repellent tablet.
Application implementation example 8
With containing 1mg compound (5), the long 35mm of preparation dipping of 15mg BHT (2,6 di tert butyl 4 methyl phenol) and 0.5mg dyestuff; Wide 22mm, the porous pad of thick 2mm (cotton fibre: 50% weight percent, paper pulp fiber: 50% weight percent); Room temperature held 3 days makes electric mosquito repellent tablet.
Reference implementation example 2
With containing 1mg tetrafluoro; The long 35mm of preparation dipping of 15mg BHT (2,6 di tert butyl 4 methyl phenol) and 0.5mg dyestuff, wide 22mm; The porous pad of thick 2mm (cotton fibre: 50% weight percent; Paper pulp fiber: 50% weight percent), room temperature held 3 days makes electric mosquito repellent tablet.
Give birth to and survey embodiment 2
With application implementation example 7,8 of the present invention, reach reference implementation example 2 and carry out evaluation of pesticide effectiveness contrast mosquito according to GB13917.5-92, adopt airtight drum device.Detailed process is following.With electric mosquito repellent tablet sample energising preheating 1h, 2h, 4h, 6h; 8h draws 20 female culex pipiens fatigans with mosquito sucking tube, puts into airtight drum test set, accurately smoked kill 1min; Clock simultaneously, cut off the electricity supply after smoking, and remove the electric mosquito repellent tablet device, write down down and out examination mosquito number at regular intervals.The result sees table 2:
The electric mat of table 2. The compounds of this invention preparation and the comparison of tetrafluoro electric mat effect
Figure BDA0000142893270000101
The result shows: with The compounds of this invention (1) be the electric mat relative effectivenes for preparing of former medicine 1.3 times at tetrafluoro, and the relative effectivenes of the compound of individual isomer (5) is more at more than 1.8 times of tetrafluoro.
Application implementation example 9
With 0.2 part of compound (1) and 0.3 part of BHT, 0.3 part spices, 99.2 parts n-tetradecane lump together and are prepared into mosquito liquid under heating.Can becomes electric liquid device then, wherein contains compound (1) 0.2w/w%.
Give birth to and survey embodiment 3
Application implementation example 9 of the present invention is carried out evaluation of pesticide effectiveness contrast according to GB13917.6-92, adopt airtight drum device.Detailed process is following: with electric liquid device sample energising 2h, 36h, 84h; 168h, 336h draws 20 female culex pipiens fatigans with mosquito sucking tube; Put into airtight drum test set, accurately smoked kill 1min clocks simultaneously; Cut off the electricity supply after smoked, and remove the electric liquid device device, write down down and out examination mosquito number at regular intervals.The result sees table 3:
The vaporizer mosquito liquid insecticidal effect statistics of table 3. The compounds of this invention preparation
Figure BDA0000142893270000102
The result shows: the electric liquid device of The compounds of this invention (1) preparation has good control effect to mosquito
Application implementation example 10
Kerosene with 0.3 weight part compound (1) and 59.7 weight parts under heating mixes a kind of pesticide preparation of preparation.The preparation that obtains is put into the aerosol jar, on jar a valve is housed, and inject 40.0 weight parts, third butane adding to depress,, wherein contain compound (1) 0.3w/w% to obtain a kind of insect aerosol through this valve.
Give birth to and survey embodiment 4
Application implementation of the present invention example 10 is carried out mosquito according to GB13917.2-92, fly, the efficacy testing of Groton bug adopts airtight drum device.Detailed process is following: will supply the examination insect to put into cylinder, and after waiting to try worm and recovering normal activity, metered injection 1g medicament from insect aerosol jar of the present invention; Extracting baffle plate behind the 1min out makes the examination worm contact with medicament; Down and out examination borer population is write down in timing immediately, and opening entry at regular intervals; To all supply to try in the dependent insect cage that worm is transferred to cleaning the dead examination of inspection borer population behind the 24h behind the 20min.Wherein Groton bug is checked the 72h mortality ratio.The result sees table 4:
The insect aerosol of table 4. The compounds of this invention preparation is to mosquito, fly, the insect killing effect of Groton bug
Insect KT50 (mosquito/fly/cockroach) 24 hours mortality ratio
Mosquito 6.22 minute 100%
Fly 7.58 minute 100%
Groton bug 5.96 minute 100%(72h)
The result shows: the aerosol of The compounds of this invention (1) preparation is to mosquito, and fly, Groton bug have good insect killing effect.

Claims (7)

1. compound that meets following formula (A), or its three-dimensional chemical isomer, or the mixture of these steric isomers:
Figure FDA0000142893260000011
Wherein: R is the H atom, Z be cyanic acid (CN) or the H atom.
2. the compound of a kind of formula as claimed in claim 1 (A) or its three-dimensional chemical isomer, or the mixture of these steric isomers is characterized in that described compound is selected from:
Compound (2): alpha-cyano-3-phenoxy benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound (R=H, Z=-CN);
Compound (4): 3-phenoxy benzyl-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound (R=H, Z=H).
3. the compound of a kind of formula as claimed in claim 1 (A) or its three-dimensional chemical isomer; Or the mixture of these steric isomers; It is characterized in that: described three-dimensional chemical isomer is selected from: compound (6) alpha-cyano-3-phenoxy benzyl-(1R; 3S)-2,2-dimethyl--3-(2-trifluoromethyl vinyl) cyclopropanecarboxylcompound.
4. the compound of the described a kind of formula of claim 1 (A) or its three-dimensional chemical isomer, or the preparation process of mixture of these steric isomers is characterized in that and can be prepared by following steps:
With structural formula be chrysanthemumic acid acyl chlorides and the structural formula of (X) the aldehyde esterification in the presence of NaCN for (Z) prepares with structural formula for the chrysanthemumic acid acyl chlorides of (X) with structural formula for the pure direct esterification of (Y) or preparation, R is the H atom in the formula;
Figure FDA0000142893260000012
Esterification can be carried out at organic solvents such as toluene, YLENE, hexanaphthenes, and the mol ratio of chrysanthemumic acid acyl chlorides and alcohol or aldehyde is 0.8: 1-1.5: 1, and the mol ratio of aldehyde and NaCN is 1: 1, adds pyridine in the reaction as acid binding agent, temperature of reaction 0-25 ℃.
5. the described a kind of compound that meets formula (A) of claim 1, or its three-dimensional chemical isomer, or the application of the mixture of these steric isomers aspect the control sanitary insect pest.
6. application as claimed in claim 5 is characterized in that: said sanitary insect pest is mosquito, fly or Groton bug.
7. application as claimed in claim 5 is characterized in that: the compound that satisfies (A) formula with said structure is prepared into various forms of sterilants as former medicine, is used for removing killing mosquito, fly or Groton bug.
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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4258202A (en) * 1978-02-28 1981-03-24 Montedison S.P.A. Cyclopropanecarboxylic acids and esters
US4332815A (en) * 1979-06-25 1982-06-01 Fmc Corporation Insecticidal perhaloalkylvinylcyclopropanecarboxylates

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4258202A (en) * 1978-02-28 1981-03-24 Montedison S.P.A. Cyclopropanecarboxylic acids and esters
US4332815A (en) * 1979-06-25 1982-06-01 Fmc Corporation Insecticidal perhaloalkylvinylcyclopropanecarboxylates

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