- Improved cymoxanil synthesis method
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The invention discloses an improved cymoxanil synthesis method. Wastewater in the process can be recycled, so that the environmental protection pressure is greatly reduced; therefore, the improved cymoxanil synthesis process is high in yield, high in quality, environment-friendly, safe and more suitable for industrial production.
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Paragraph 0027; 0028
(2017/05/18)
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- Synergistic Combinations Of Active Ingredients
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The present invention relates to novel active compound combinations comprising, firstly, at least one known compound of the formula (I) in which R1 and A have the meanings given in the description and, secondly, at least one further known active compound from groups (2) to (27) listed in the description, which combinations are highly suitable for controlling animal pests such as insects and unwanted acarids and also phytopathogenic fungi.
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- Synergistic Active Compound Combinations Comprising Phenyltriazoles
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The present invention relates to novel active compound combinations comprising, firstly, at least one known compound of the formula (I) in which R1 and R2 have the meanings given in the description. and at least one further known active compound from groups (2) to (27) listed in the description, which combinations are highly suitable for controlling animal pests such as insects and unwanted acarids and also phytopathogenic fungi.
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- On the stereochemistry of the synthesis of 1-(2-cyano-2-methoxyiminoacetyl)-3-ethylurea and its E-configuration crystal structure
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The synthesis of 1-(2-cyano-2-methoxyiminoacetyl)-3-ethylurea leads to only one of the two possible diastereomers, which has been found to be in the E-configuration by X-ray analysis.
- Greci, Lucedio,Carloni, Patricia,Mandrioli, Odofredo,Righi, Lara,Rizzoli, Corrado,Sgarabotto, Paolo
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p. 655 - 657
(2007/10/03)
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- Pyrimidine derivatives, process and intermediate products for their preparation and pesticides or fungicides containing these derivatives
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Pyrimidine compounds I wherein X is C(CO2CH3)═NOCH3, C(CONHCH3)═NOCH3, C(CO2CH3)═CHOCH3, C(CO2CH3)═CHCH3or N(CO2CH3)—OCH3; R1, R2are hydrogen, alkyl, haloalkyl or alkoxy; A is R3is hydrogen, alkyl, haloalkyl, phenoxyalkyl, cycloalkyl, cyano, alkoxy, hydroxyl or halogen; R4is hydrogen, optionally substituted alkyl, alkenyl, alkynyl, haloalkenyl, haloalkynyl, cycloalkyl or alkoxy; Y is hydrogen, hydroxyl, halogen, optionally substituted aryl, hetaryl, cycloalkyl, cycloalkenyl, heterocyclyl, alkyl, alkenyl, alkynyl, haloalkyl, alkoxy, aryloxy, arylthio, hetaryloxy, hetarylthio, cycloalkyloxy or alkylthio, or their salt, their synthesis and intermediates therefore, and their activity against fungi or animal pests.
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- Use of aminoisothiazoles as microbicides
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PCT No. PCT/EP97/06854 Sec. 371 Date Jun. 16, 1999 Sec. 102(e) Date Jun. 16, 1999 PCT Filed Dec. 9, 1997 PCT Pub. No. WO98/27816 PCT Pub. Date Jul. 2, 1998Aminoisothiazoles of the formula I, where R is hydrogen or C1-C4 alkyl and X is halogen, NO2, CN or SCN, and metal complexes and acid addition salts thereof are used as microbicides for protecting industrial materials from being attacked and destroyed by microorganisms.
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- Fluoropyrazole-biphenylamide fungicides
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PCT No. PCT/EP98/04663 Sec. 371 Date Feb. 10, 2000 Sec. 102(e) Date Feb. 10, 2000 PCT Filed Jul. 25, 1998 PCT Pub. No. WO99/09013 PCT Pub. Date Feb. 25, 1999The invention relates to biphenylamides having general formula (I), and their salts, in which R1 is H or F; R2 is H, halogen, alkyl, halogen methyl, alkoxy, alkylthio; R3 is CH3, CHF2, CF3. The invention also relates to agents containing biphenylamnides, the production of biphenylamides and their use in combating parasitic fungus.
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