Systematic substituent changes on a pyridine core produce compounds with improved efficacy against undesirable plant growth in crops.
Combining L-glufosinate with selected herbicides targets resistant weeds at lower rates while extending control in corn.
Pre-harvest laminarin, alone or with fungicides, supports disease management while extending shelf-life and retaining nutrients.
Multiple evaporators and ionized reactive gas enable rapid, scalable catalyst films with lower pollution and strong adhesion.
This case combines selective compounds with early application to improve weed control while reducing crop and environmental harm.
A stabilized Bacillus megaterium carrier formulation solubilizes phosphate in alkaline soils without direct acidic fertilizer inputs.
This route forms dimethylcyclobutane diesters, then reduces them to pheromone intermediates with lower safety and environmental burden.
A cationic polysaccharide, anionic surfactant, and compatibilizer form stable complexes for lasting mosquito larval control.
A carrier and stabilizer help Bacillus promote plant growth and germination in alkaline soils, reducing reliance on synthetic fertilizers.
Calcium-pectin gelling compositions reduce fertilizer sedimentation and leaching, extending agent residency while protecting roots.
Combining Av3 mutant polypeptides with Btk toxins creates agricultural formulations for broader, more reliable pest control.
Oxide-coated silver maintains antimicrobial action while limiting discoloration and instability.
Replacing the gxpS promoter enables controlled GXP production, suppressing pest immunity and improving bacterial pest control.
This case uses volatile compounds for nasal delivery to the brain and vapor-phase targeting of plant tissues.
A Formula I compound controls diverse plant diseases, including soybean rust, and can be combined with other agrochemicals.
This seed coating combines allantoin and L-tryptophan to improve germination, early growth, and crop yield under stress conditions.
This case combines high-pressure cell rupture with enzymatic hydrolysis to improve amino acid and nitrogen recovery from non-animal biomass.
A feather-and-water KHP solution uses high-temperature, high-pressure hydrolysis to increase tender tea leaves without accelerating aging.
This case applies donor-plant small RNA extracts to receiving crops, improving yield and nutrient use while reducing synthetic inputs.
This foliar sugar formulation uses surfactant adjuvants to speed leaf uptake, translocation, fruit sugar gain, and pest control.
A dual-surfactant WDG formulation improves granule stability, suspensibility, and dispersibility for combined fungicides.
Inorganic-acid pH adjustment stabilizes platinum nanoparticles, limiting aggregation and discoloration in antibacterial products.
This case combines ethofumesate and a complementary herbicide to broaden weed control, extend action, and reduce crop damage.
This case combines pyridine carboxylate, PS II, and optional HPPD inhibitors with safeners to control weeds while protecting crops.
Specific nutrient ratios and controlled conditions support consistent Centella growth with elevated madecassoside and asiaticoside levels.
This process combines controlled reactions, acidification, and phase separation to limit nickel contamination and side products.
This case combines pyridine carboxylate herbicides, ALS inhibitors, and safeners in tuned ratios to control weeds while protecting crops.
Substituted 2,3-dihydrothiazolopyridines broaden weed control while improving crop compatibility at low application rates.
A galvanic silver-ruthenium layer delivers antimicrobial action while reducing healing delays associated with conventional silver dressings.
Pyridine carboxylate and synthetic auxin mixtures use safeners to control weeds in crops with minimal crop harm.
Replace complex GC-MS analysis with acid-assisted p-DAB or DMACA colorimetry for practical fludioxonil quantification.
Photocatalytic on-site generation enables water-free sterilization with reduced residue.
This case applies glucosinolate combinations and hydrolysis products to control broad-spectrum fungal pathogens and extend produce shelf-life.
This case replaces CQC-M with cloquintocet salts to reduce clogging and hydrolysis in aqueous pyroxsulam formulations.
This case shows how picolinamide formulations combine broad fungal coverage with low phytotoxicity for crop protection.
Trichoderma harzianum ferments iron oxide into nanoparticles that improve plant growth and drought resistance without genetic engineering.
Vapor-release devices target hidden pests while reducing material damage from liquid sprays.
Metal-ion macrocycles add antimicrobial activity while limiting heat decomposition and coloring.
Chemical seed and bulk metal layers improve textile coverage and wash durability while preserving fabric feel and skin-contact safety.
Adding tertiary amine or amine oxide surfactants shifts droplets larger, reducing fines below 150 μm and off-target herbicide movement.
A pyrimidinone compound combined with complementary fungicides improves wheat disease control while reducing dosage and resistance pressure.
Pyrethrin and pymarc are integrated into fuel briquettes to repel insects while providing cooking heat during combustion.
This case uses low-concentration essential oils, composite emulsifiers, and buffered pH to stabilize water-based insect repellant.
Using ethanol or isopropanol as a carrier, the formulation acts within 15–60 minutes for humane invasive amphibian control.
Combining dimpropyridaz with fungicides or insecticides broadens control, lowers individual dosage needs, and helps delay resistance.
This case combines PVA with water-soluble herbicides and surfactants to improve plant-surface retention and weed control after rainfall.
Layered hydrophobic and hydrophilic solvents stabilize fresh plant materials, reducing oxidation and microbial risk without drying.
Hydrocolloid gums create sprayable adhesive droplets that immobilize small insects while reducing toxic chemical use and environmental harm.
This case combines formula (I) compounds with biological control agents to improve pest efficacy, spectrum, and crop compatibility.
Microencapsulated active substances release near young root clumps, improving uptake while reducing chemical loss and dispersion.