See how GRAS organic acids incorporated into polymers provide durable microbial control, replac
See how pressurized inert gas replaces chlorine and ozone in wet wipe formulations, reducing mi
See how a disinfecting glove with an attached pad saturated with disinfectant eliminates the ne
See how composite metal oxide shells with optimized thickness and core-shell ratio achieve low
See how HPPE filaments combined with thermoplastic ethylene copolymer and polysiloxane reduce r
See how a two-step enzyme and organosilane system removes biofilm residues from performance tex
See how atmospheric plasma treatment deposits amine-based coatings on polymer surfaces in one s
See how shikkui particles with controlled size and carrying amount maintain 8-hour antiviral ac
See how a polymer-silver complex prevents fabric discoloration from antimicrobial silver ions w
See how metal oxide and silica composite shells replace polymeric materials to achieve low perm
See how layer-by-layer cationic and anionic polymer bilayers reduce bacterial adhesion by 95% w
See how water-soluble particles release metal ions during washing to provide consistent antimic
See how silver ions adsorbed on titanium dioxide with thermosetting binder deliver persistent b
See how selective extraction removes toxic naphthalene and azulene from Muscodor volatile by-pr
See how 190-235 nm UV irradiation during visible-light periods inactivates bacteria and viruses
See how hop acids, resin acids, and fatty acids inhibit thermophilic microorganisms in deep geo
See how a quaternary ammonium and organosilane coating on packaging surfaces reduces microbial
See how visible-light singlet oxygen cross-links amine polymers into antimicrobial coatings wit
See how a copper-nanoparticle protein matrix coating provides reusable biocidal activity agains
See how silane-based quaternary ammonium compounds bonded to polymer matrices prevent leakage w
See how a beta-cyclodextrin compound with crosslinkers replaces silver to achieve durable bacte
Bacillus spores on a breathable adsorbent mat cut pet waste odor by breaking down proteins while allowing liquid evaporation for pad reuse.
See how a dual-dispenser kit couples wet and dry wipes with a heat-sealed handle to eliminate s
See how a glycoprotein-coated textile carrier uses binding intermediates to enhance pathogen ca
See how cashew testa extract combined with iron particles and carbohydrate replaces toxic heavy
See how an integrated indicator-dispensing device provides visual feedback and automated contac
See how a hydrogel coating of poly(vinylamine) and poly(amideamine-epichlorohydrin) prevents el
See how mineral oxide and iron oxide particle coatings trap virus particles while maintaining l
See how unoxidized metallic copper nanoparticles bonded with graphene oxide prevent leaching an
See how organic acid biostabilizers control thermophilic microorganisms in high-temperature, hi
See how inorganic metal-ion antibacterial agents embedded in door decor members improve hygiene
See how a beta-cyclodextrin-based finish mimics sialic acid to bind viral spike proteins, achie
See how silicon nitride powder impregnated in mask fibers inactivates viruses by breaking RNA,
See how terminal hydroxyl groups on aromatic polyol form chelating bonds with zinc oxide to pre
A silane-bonded antimicrobial coating helps healthcare textiles retain broad-spectrum efficacy through aggressive hospital laundering.
See how silicon nitride and aluminum nitride coatings inactivate SARS-CoV-2 through nitrogen sp
See how copper shavings stored in breathable nets provide passive antibacterial and antiviral a
See how zinc pyrithione in polyurethane backing prevents microbial growth in artificial turf wh
See how sulfonate-modified peroxycarboxylic acids solve storage instability, water insolubility
See how a crosslinked cationic polymer coating binds microorganisms to the wipe, achieving 99%
See how sodium pyrithione with binder forms a durable polymer coating on textiles, replacing he
See how base treatment and TiO2 nanoparticle coating with UV activation create self-disinfectin
See how real-time PAA gas sensors and dynamic solution-concentration adjustment maintain disinf
See how atomically sharp surface features mechanically lyse airborne microorganisms without che
See how cationically modified polysaccharide prevents microcapsule aggregation and sedimentatio
See how hexahydrofarnesyl acetone extracted from Anisomeles species provides 8-hour tick and mo
See how an oxazoline homopolymer binder forms a non-tacky film that maintains biocidal activity
See how dual-denier polyester fiber blends enable effective octenidine release from nonwoven wi
See how a cationic polymer coating uses localized charge density and pH-responsive agents to ki
Indole derivatives offer rapid, long-lasting treatment of liver fluke infections, including triclabendazole-resistant Fasciola hepatica.
A surfactant blend improves water infiltration and percolation in hydrophobic soils while supporting moisture retention and agrochemical compatibility.
A surfactant and solvent package lets glufosinate-ammonium reach high loading while preserving storage stability and herbicidal efficacy.
A neutralized polar polyolefin dispersion gives seeds a more uniform, water-resistant coating with better adhesion and preserved germination.
Carvacrol-rich herbicide formulations selectively kill dicot weeds in grass while minimizing monocot damage and environmental burden.
Borate-polyol complexes boost multi-dose ophthalmic antimicrobial preservation while limiting corneal toxicity and buffering-related eye discomfort.
A polystyrene sulfonate salt binds benzalkonium and silver into a stable coating that keeps antiviral and antimicrobial activity on surfaces for months.
Modified AXMI477 toxin variants improve Helicoverpa control while preserving activity against other pests and reducing reliance on chemical insecticides.
Using fluoride ion scavengers, this case shows selective synthesis of heterocyclic fluorinated pyrazoles with 4-position trifluoromethylation.
Oxidized cellodextrins and cellobionic acid trigger plant immune responses, improving pathogen resistance without the environmental harm of pesticides.
A three-fungicide blend targets Aphanomyces root rot in legumes while broadening pathogen control and improving crop health.
Encapsulated fluensulfone seed coatings control nematodes at the root zone while preserving germination, crop selectivity, and application timing.
A brown algae extract rich in mannitol, laminarans, and fucoidans boosts beneficial soil bacteria to improve plant growth without harming microbial diversity.
Micron-scale zinc phosphate roughness on aluminum surfaces adds mold, microbial, and virus inactivation without sacrificing metal strength.
Using Trichoderma viride filtrate with flour or clay improves storage stability while inhibiting fungal pathogens and supporting plant growth.
Cyclobutrifluram seed treatment uses plant uptake to reach aerial tissues and control Aphelenchoides besseyi more effectively at low rates.
A polyphenol oil and surfactant adjuvant balances spreading and penetration with stable emulsions, lower foaming, and UV protection.
Low-temperature reaction of silicon and NaOH replaces furnace silicate processing, cutting time and cost while producing usable orthosilicate solutions.
A Trichoderma viride filtrate with conidia, fermentation byproducts, flour, and clay extends shelf life while suppressing fungal pathogens.
A stem-applied mineral and microbial composition cures esca-infected grapevines and helps prevent fungal spread in healthy vines.
Controlled solvent recycling and metastable-temperature crystallization grow larger isoxazoline particles while limiting fine crystal formation.
Combining SHetA2 with p53 reactivators or CDK4/6 inhibitors improves ovarian tumor control while limiting toxicity and recurrence.
Cross-linked polymer walls keep benefit agents sealed in harsh surfactant-based formulations while preserving biodegradability and controlled release.
A flameless heat source boosts treatment agent evaporation from a portable holder, improving local coverage without complex aerosol hardware.
A tuned free-radical initiator level helps high core:wall polyacrylate particles resist leakage and brittle rupture for better benefit-agent delivery.
Sugar alcohols, humic acids, fulvic acids, and maltodextrins protect inoculant microorganisms from desiccation and storage stress.
PEG or DMSO-based thiotepa formulations limit aqueous degradation and impurities, enabling stable ready-to-use injections for storage.
Targeted nanobodies bind insect proteins such as chitin synthase and trehalase to control pests with lower ecosystem and human toxicity.
A neem azadirachtin and plant-oil blend improves bed bug kill and residual control while reducing toxicity to humans and non-target organisms.
An oil-in-water emulsion improves JAK inhibitor stability, spreadability, and skin permeation for topical treatment of skin disorders.
Aloe vera-based extracts with phenols and anthocyanins help stressed plants repair tissue, restore growth, and improve yield.
A hard fat and surfactant suppository localizes 6-thioguanine delivery in the distal bowel while limiting systemic absorption and liver toxicity.
A terrylene diimide color converter shifts light into 680-900 nm far-red wavelengths to steer phytochrome responses and improve crop growth.
Controlled ZnO particle size and photoluminescence help polyamide or polyester resins balance weather resistance, antibacterial action, and strength.
An aqueous alginate-pectin microcapsule approach stabilizes pesticides, enables controlled release, and avoids emulsions and organic solvents.
Protein-polysaccharide shells crosslinked with polyisocyanates encapsulate hydrophobic actives with controlled release and lower microplastic impact.
Non-modified inorganic particles form Pickering microcapsules that resist surfactant leakage while preserving low permeability and fragrance release.
Substituted imidazolidine pyrimidinium compounds broaden insect and nematode control while helping address resistance and pollution limits.
Pelargonic acid in feed and drinking water helps curb ASFV spread while providing a safer oral antiviral approach for animals.
Biocide-compatible bacterial inoculants control insects and nematodes while improving plant health and reducing reliance on chemical pesticides.
An isolated Trichoderma atroviride strain suppresses Plasmopara viticola and induces plant resistance, reducing reliance on chemical fungicides.
A salt, calcium hypochlorite, nano-silver, and desiccant coating helps produce packaging suppress microbes, browning, and moisture loss.
Selective anthocyanin or betanin dyes verify chlorine dioxide generation and mixing by visible color change without interference from peroxide disinfectants.
Hydroxyl radicals generated from peroxide, ascorbic acid, and organic acids break down metal-containing biofilms in water systems with less corrosion risk.
A polyethylene oxide and non-ionic surfactant adjuvant shifts droplet behavior to cut spray drift while improving plant deposition.
An organic-inorganic shell network improves microcapsule strength and lowers leakage while enabling controlled release of liquid active ingredients.
Direct asymmetric hydrogenation with a chiral transition metal catalyst avoids costly resolution steps and improves enantiomeric enrichment.
One-pot alkylation and reduction routes simplify pyrrolidinone synthesis while controlling stereoisomer ratios for herbicidal use.
Electrospun nanofibers with biocidal action capture microbe-laden droplets while preserving air permeability for protective masks.
Quaternized polyethyleneimine dressings suppress broad-spectrum bacterial colonization in chronic wounds while supporting faster healing.
Synergistic mycosporine-like amino acids boost antimicrobial efficacy in stable, skin-tolerant formulations while reducing preservative load.
GRAS organic acids with 3-phenylpropanol deliver microbial control in thermoplastics while lowering processing temperature and avoiding depolymerization.
A stable supramolecular sol prevents rapid precipitation, enabling single-nozzle spray coating with broad antibacterial and antiviral action.
Carbazole compounds inhibit Candida growth and hyphal transformation while limiting mammalian cell toxicity and broadening antifungal coverage.
Novel 2,2-dihalocyclopropyl compounds raise insecticidal and acaricidal activity to protect plants, including against resistant pests.
Combining oxo or hydroxy fatty acids with unsaturated fatty acids creates a powder activator that resists wash-off and stores stably.
Optimized PPO inhibitor and glufosinate ratios create stronger synergistic weed control across crop, orchard, and non-crop uses.
Sequential spectral imaging maps invasive annual grasses by growth stage, enabling targeted herbicide use with less waste and ecosystem harm.
A bioadhesive mPEG film releases attached microbes from skin, wounds, and implants while limiting infection and supporting healing.
A carbonyl solvent and formula (I) adjuvant keep SDHI fungicides soluble during dilution while preventing crystallization and emulsion instability.
Indaziflam-based grazeland treatment suppresses invasive weeds, depletes the seed bank, and keeps meat and milk safe for consumption.
A two-stage ALD temperature sequence forms uniform shells on organic particles while limiting degradation and preventing agglomeration.
Solvent-modified biodegradable polymer mesh physisorbs pheromones for sustained release, pest exclusion, and dispenser reuse.
Alkoxypyrazole compounds curb nitrification with lower volatility, reducing nitrogen leakage and improving long-term fertilizer efficiency.
A new oxadiazole fungicide composition helps control plant diseases by overcoming resistance that reduces the effectiveness of existing drugs.
A dual-action alpha-cypermethrin and dinotefuran mixture overcomes pyrethroid resistance while reducing total insecticide use and impact.
Novel Metarhizium strains improve spore yield, field stability, and insect mortality for more consistent control of thrips, weevils, and aphids.
High molecular weight polymers enlarge peracid spray droplets to cut misting and inhalation risk while preserving spray coverage and antimicrobial efficacy.
Inserted gut-binding peptides help Cry1Ac retain binding in resistant pink bollworm gut tissue, restoring toxicity for Bt crop protection.
Combining phytosterol and sucrose fatty acid ester applications with fungicide cuts soybean fungal severity while sustaining yield.
Hop acids suppress gram-positive contaminants in PPFM and methanotroph fermentation, improving biomass yield and process stability.
Fish scale peptides made by Bacillus velezensis boost Solanaceae seedling growth through foliar spraying while avoiding soil pollution.
Stable oxadiazole polymorphs prevent crystal growth and equipment blockages while preserving suspension concentrate fungicide stability.
Combining diformylurea with NPK and boron improves nutrient uptake, plant growth, and crop yield while reducing chemical use and environmental risk.
Glycol ether solvent with ammonium salt and dispersant keeps insecticide suspensions stable across temperatures while improving active ingredient penetration.
Novel diazine-amide compounds broaden control of insects and acarines while protecting crops and plant propagation material.
Diutan gum in water-based agrochemical sprays reduces droplet shatter and off-target movement, improving precision application on plants.
A high-spore Trichoderma asperellum HM-8 agent suppresses Fusarium and Erwinia to control crop rot without pesticide residues.
PPO inhibitors rapidly terminate cover crops at key growth stages, enabling timely summer crop reseeding while controlling weeds.
A buffered ammonia-ammonium composition uses sodium bicarbonate and ORP/pH endpoint control to form stable biocide with less salt.
Weather-based infection risk modeling times plant defense elicitor use to control crop diseases with fewer unnecessary applications.
A cold-processed blend of coconut oil, sodium ionized water, and alkaline agents cleans effectively while improving biodegradability and pesticide removal.
A surfactant-free glyphosate concentrate uses natural inert additives to maintain efficacy, lower viscosity, and improve storage and shipping.
A dry coated seed combines herbicide, amphiphilic layers, and hydrogel to suppress nearby weeds while supporting storage stability and germination.
Using green onion extract or powder, this case boosts stem, root, leaf, and flower growth while improving abiotic stress resistance.
A two-phase solid and liquid culture process cuts Methylobacterium production time while raising high-titer yields on low-cost media.
A turmeric rhizome extract is refined by solvent extraction and molecular distillation, then emulsified for stable, low-toxicity powdery mildew control.
A fludioxonil and azoxystrobin spray raises post-harvest residues and helps manage fungal resistance in stored beets, potatoes, and corm vegetables.
An HNH-type DNase composition with surfactants and sequestering agents breaks down biofilms on uneven surfaces while remaining stable in liquid form.
A two-step enzyme route converts D-glufosinate through PPO into L-glufosinate, improving stereoselectivity without complex chiral separation.
Non-partitioning preservatives stay in the aqueous phase to stop microbial growth and premature leakage in biodegradable microcapsules.
A triazolo-pyrimidine and chlorhexidine blend kills resistant pathogens at low concentration while reducing skin irritation and resistance risk.
A TPE composite combines Povidone-iodine and hydrotalcite-embedded copper nanoparticles to broaden antimicrobial coverage while retaining material durability.
Modified nanocellulose anchors metal nanoparticles on plant surfaces to resist wash-off, extend antimicrobial action, and cut reapplication.
Junction-spanning nucleic acid sequences enable rapid, precise PCR or hybridization detection of the DBN8205 transgenic soybean event.
Heteroaryl-substituted cinnoline derivatives improve herbicidal activity, stability, and broad-spectrum weed control in crop applications.
Benzyl alcohol released by natural convection maintains stable indoor sanitization, deodorization, and virus inactivation without unstable gas levels.
Using Streptomyces linyiensis fermentation broth, this case restores rhizosphere nitrogen fixation and supports crop growth with less fertilizer.
A cationic polymer dispersion replaces organic solvents to create antimicrobial dental varnish films with smooth adhesion, water tolerance, and no burning sensation.
Rocket plant extract applied by foliar spray stimulates plant defenses against bacterial and fungal infection while reducing pesticide toxicity.