Combining denatonium with bio-insecticides improves pest mortality and resistance control while protecting non-target insects and seed germination.
A novel pyrazole fungicide composition addresses pathogen chemical resistance while maintaining strong control activity in agricultural use.
A zeolite-polysaccharide-silicate mixture forms leaf capsules that slow insecticide loss, extend residual effect, and avoid microplastic carriers.
Direct bromination and etherification remove esterification and hydrolysis steps, cutting cost and energy in tembotrione intermediate synthesis.
Novel 2,2-dihalocyclopropyl compounds vary ring and side-chain substituents to raise insecticidal and acaricidal activity for plant protection.
Metal nanoparticle agglomerates on gloves and garments provide extended antiseptic action while tags help track PPE use and contact exposure.
A photosensitizer-polymer spray coating keeps surfaces antimicrobial for weeks under ambient light while inactivating viruses and bacteria.
Controlled red-blue light, leaf injury, and plant enzymes raise alkaloid yield while avoiding hazardous reagents and extra purification steps.
A silicone emulsifier and polyglyceryl ester keep chlorhexidine water-stable and slow-releasing for longer antibacterial action on skin and fabric.
An organic base converts saflufenacil into a stable high-load liquid formulation that improves water solubility and prevents precipitation.
A plaster-based tablet matrix controls active release over up to 12 weeks while maintaining rapid mosquito mortality without an effervescent layer.
Multi-layer antimicrobial, moisture-wicking net cords dry and disinfect the ball during play to preserve grip and reduce germ transfer.
Emulsion and dust formulations boost essential-oil pesticide activity, cutting active ingredient use while improving pest control and safety.
Protease-based plant sprays with optional glucanase or chitinase prevent fungal and bacterial infections without copper toxicity.
A crosslinked cellulose nanocrystal emulsion stabilizes agrochemicals, cuts vapor and particle drift, and maintains sprayability.
Combining herbicide A with mesotrione creates a synergistic post-emergent blend that broadens weed control and improves crop compatibility.
Micellar phospholipid and nonionic surfactant formulations enable under-1-minute disinfection while reducing corrosion, skin irritation, and solubility limits.
Novel 3-substituted phenylamidine compounds improve control of phytopathogenic fungi while lowering resistance pressure and active-compound use.
New oxadiazine-pyridazine fungicides broaden fungal control while maintaining low toxicity, high selectivity, and low application rates.
A synergistic dimethenamid mixture boosts post-emergent weed control, broadens activity to Commelinids, and maintains crop compatibility.
Combining fungicidal bacteria with C12-24 fatty acids boosts plant health and pathogen control when biocontrol alone falls short.
A bio-based shell combining surfactant, aminosilane, hydrocolloid, and epoxy linker improves microcapsule stability, biodegradability, and release.
Buffered amine oxides stabilize pH and boost insecticide and fungicide action, reducing chemical use while protecting living plants.
Low-dielectric solvents steer thiolation of dichloropicolinic amides toward the ortho isomer, raising yield and cutting waste.
Targeted pyridazinone substitutions improve control of broad-leaved dicot weeds in crops where existing herbicides fall short.
A chlorhexidine wipe on nonwoven polyester cloth sustains surgical site disinfection for up to eight hours while meeting TFM responder rates.
Targeted substitutions on phenyl-pyridazine-dione derivatives improve control of broad-leaved dicot weeds in crops.
Low-viscosity polysiloxane blended with crop or seed oil concentrates boosts foliar droplet adhesion and spreading beyond traditional adjuvants.
Low-concentration microalgae treatments boost seed emergence, crop yield, and soil microbial health under stress conditions.
Image analysis targets specific plants and doses 1-100 nL droplets to cut drift, waste, and off-target crop protection exposure.
MtDef5 peptides expressed in transgenic plants broaden antifungal protection and help limit resistance across multiple fungal pathogens.
Combining ZJS178 with triazole, SDHI, pyrrole, imidazole, or strobilurin fungicides boosts Fusarium control while delaying resistance.
Warm-space fogging combines pesticides with 1-MCP to improve distribution in storage rooms, suppress pathogens, and delay crop ripening.
Spray drying and fluidized-bed agglomeration turn fermentation-derived bioactive proteins into soluble, low-dust solids with preserved activity.
Micelle-forming surfactants and alcohol cosolvents dissolve hydrophobic icaridin in water, enabling stable, non-flammable spray formulations.
Cell wall disrupting enzymes help antifungal polypeptides reach the fungal membrane, improving control while lowering dose requirements.
A non-aqueous particle coating between dissolvable sheet layers improves sealing, prevents powder leakage, and protects moisture-sensitive actives.
An oil-in-water topical JAK inhibitor formulation uses pH control and emulsion structure to improve skin permeation while maintaining stability.
Recombinant keratin-degrading polypeptides enable scalable breakdown of wool and feathers at lower temperatures and neutral pH.
Engineered SrKO enzymes oxidize low-cost sesquiterpenes into nootkatol and nootkatone, improving yield and commercial feasibility.
Plant-derived isosecotanapartholide with lemon grass oil delivers strong stored-grain insect control without harming seed germination.
A polymeric dispersant keeps nanosilver uniformly mixed in contact lenses, preventing aggregation while sustaining antibacterial action and comfort.
PM10 and PM11 Priestia megaterium metabolites suppress Phyllachora maydis, strengthen corn resistance, and support earlier tar spot control.
Phosphate-solubilizing microorganisms plus LCOs on seeds improve phosphorus uptake, root development, and crop yield with less fertilizer waste.
A staphylococci-specific lytic protein tackles antibiotic resistance by directly lysing S. aureus while limiting harm to normal flora.
Combining triazine herbicides with pelargonic acid broadens weed control, counters resistance, and limits crop damage with residual action.
Carboxylic esters replace unstable vegetable oils to keep fungal spores viable and stable in liquid formulations at elevated temperatures.
Using Lactobacillus fermentum biofilm or extracts, this case shows how to suppress pathogenic biofilms while restoring skin barrier and immune function.
Multicationic amphiphiles overcome QAC resistance by combining distributed cationic groups with hydrophobic tails to kill resistant bacteria and biofilms.
A defined carvacrol, eucalyptol, and terpinen-4-ol blend delivers broad biocidal action at lower doses with less environmental harm.