A01N57/24

BISMUTH-THIOLS AS ANTISEPTICS FOR AGRICULTURAL, INDUSTRIAL AND OTHER USES
20170150724 · 2017-06-01 ·

Compositions and methods, including novel homogeneous microparticulate suspensions, are described for treating natural and artificial surfaces that contain bacterial biofilm, including unexpected synergy or enhancing effects between bismuth-thiol (BT) compounds and certain antibiotics, to provide formulations including antiseptic formulations. Previously unpredicted antibacterial properties and anti-biofilm properties of disclosed BT compounds and BT compound-plus-antibiotic combinations are also described, including preferential efficacies of certain such compositions for treating certain gram-positive bacterial infections, and distinct preferential efficacies of certain such compositions for treating certain gram-negative bacterial infections.

HERBICIDAL ACTIVITY OF ALKYL PHOSPHINATES

The present invention relates to compounds of formula (I) and compositions comprising the same. The invention also relates to the use of compounds of formula (I), or of compositions comprising the same, or of compounds of formula (II), for controlling unwanted vegetation. Further, the invention relates to methods of applying compounds of formula (I), or compositions comprising the same, or compounds of formula (II) on plants, their seed and/or their habitat. Finally, the invention relates to a method of manufacturing a compound of formula (III) via a compound of formula (I).

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HERBICIDAL ACTIVITY OF ALKYL PHOSPHINATES

The present invention relates to compounds of formula (I) and compositions comprising the same. The invention also relates to the use of compounds of formula (I), or of compositions comprising the same, or of compounds of formula (II), for controlling unwanted vegetation. Further, the invention relates to methods of applying compounds of formula (I), or compositions comprising the same, or compounds of formula (II) on plants, their seed and/or their habitat. Finally, the invention relates to a method of manufacturing a compound of formula (III) via a compound of formula (I).

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PYRIDAZINONE HERBICIDES

Disclosed are compounds of Formula 1, including all stereoisomers, N-oxides, and salts thereof,

##STR00001##

wherein X is O, S or NR.sup.5; or X is C(R.sup.6)C(R.sup.7), wherein the carbon atom bonded to R.sup.6 is also bonded to the carbon atom bonded to R.sup.4, and the carbon atom bonded to R.sup.7 is also bonded to the phenyl ring moiety in Formula 1; and R.sup.1, R.sup.2, R.sup.3, R.sup.4, R.sup.5, R.sup.6, R.sup.7, G and W are as defined in the disclosure.
Also disclosed are compositions containing the compounds of Formula 1 and methods for controlling undesired vegetation comprising contacting the undesired vegetation or its environment with an effective amount of a compound or a composition of the invention.

Acetyl-CoA carboxylase modulators

Provided herein are compounds that exhibit activity as acetyl-CoA carboxylase modulators (e.g., inhibitors) and are useful, for example, in methods for the control of fungal pathogens in plants.

Acetyl-CoA carboxylase modulators

Provided herein are compounds that exhibit activity as acetyl-CoA carboxylase modulators (e.g., inhibitors) and are useful, for example, in methods for the control of fungal pathogens in plants.

ACETYL-COA CARBOXYLASE MODULATORS

Provided herein are compounds that exhibit activity as acetyl-CoA carboxylase modulators (e.g., inhibitors) and are useful, for example, in methods for the control of fungal pathogens in plants.

ACETYL-COA CARBOXYLASE MODULATORS

Provided herein are compounds that exhibit activity as acetyl-CoA carboxylase modulators (e.g., inhibitors) and are useful, for example, in methods for the control of fungal pathogens in plants.