Items 241 to 250 of 290 total
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Anilofos | 64249-01-0 | sc-233876 | 100 mg | $57.00 | ||
Anilofos is a selective organophosphate pesticide that targets the nervous system of pests by inhibiting acetylcholinesterase, an enzyme crucial for neurotransmitter breakdown. This inhibition leads to the accumulation of acetylcholine, resulting in paralysis and death of the target organisms. Its lipophilic nature allows for effective absorption through insect cuticles, enhancing its efficacy. Anilofos also demonstrates a moderate persistence in the environment, making it effective over extended periods. | ||||||
Chlorosulfuron | 64902-72-3 | sc-239533 sc-239533A | 100 mg 1 g | $49.00 $624.00 | ||
Chlorosulfuron is a systemic herbicide that operates by inhibiting the enzyme acetolactate synthase, crucial for branched-chain amino acid synthesis in plants. This selective action disrupts metabolic pathways, leading to stunted growth and eventual plant death. Its high solubility in water facilitates rapid uptake by roots and foliage, while its stability in soil enhances its effectiveness against a broad spectrum of weeds. Chlorosulfuron's unique mode of action makes it a vital tool in integrated weed management strategies. | ||||||
4-Nitrophenol sodium salt dihydrate | 66924-59-2 | sc-232924 | 1 g | $120.00 | ||
4-Nitrophenol sodium salt dihydrate acts as an effective pesticide by disrupting metabolic processes in target organisms. Its unique ability to inhibit key enzymes involved in energy production leads to a decline in pest vitality. The compound's solubility in water enhances its distribution in soil and plant systems, facilitating uptake by pests. Furthermore, its reactive nitro group can engage in specific interactions with biological macromolecules, amplifying its toxic effects on insect physiology. | ||||||
Paclobutrazol | 76738-62-0 | sc-236284 sc-236284A sc-236284B | 250 mg 1 g 5 g | $34.00 $52.00 $147.00 | 2 | |
Paclobutrazol is a plant growth regulator that functions by inhibiting gibberellin biosynthesis, a key hormone in plant development. This suppression leads to reduced stem elongation and altered flowering patterns. Its unique ability to bind to specific enzymes in the gibberellin biosynthetic pathway allows for precise modulation of plant growth. Additionally, Paclobutrazol exhibits strong soil retention properties, influencing its bioavailability and efficacy in various environmental conditions. | ||||||
Cyfluthrin | 68359-37-5 | sc-239282 | 250 mg | $55.00 | 1 | |
Cyfluthrin acts as a pesticide by disrupting the nervous system of target insects through its potent neurotoxic properties. It binds to sodium channels in nerve cells, prolonging their activation and leading to paralysis. This compound exhibits high lipophilicity, facilitating rapid absorption and distribution within insect tissues. Its stability in diverse environmental conditions enhances its effectiveness, while its selective toxicity minimizes impact on non-target organisms, making it a strategic choice in pest management. | ||||||
Buprofezin | 69327-76-0 | sc-234226 | 100 mg | $53.00 | ||
Buprofezin functions as a pesticide by inhibiting the synthesis of chitin, a crucial component of insect exoskeletons. This disruption impedes molting and growth in target pests, leading to their eventual demise. Its unique mode of action targets specific hormonal pathways, making it effective against a range of insects while sparing beneficial species. Additionally, Buprofezin's low volatility and persistence in the environment contribute to its reliability in controlling pest populations over time. | ||||||
Diniconazole | 70217-36-6 | sc-234766 | 250 mg | $72.00 | ||
Diniconazole acts as a pesticide by disrupting the biosynthesis of ergosterol, an essential component of fungal cell membranes. This interference compromises membrane integrity, leading to cell lysis and ultimately the death of pathogenic fungi. Its selective action on fungal pathways allows for targeted control while minimizing impact on non-target organisms. Furthermore, Diniconazole exhibits strong systemic properties, enhancing its efficacy in protecting plants from fungal infections. | ||||||
Metalaxyl-M | 70630-17-0 | sc-235602 | 100 mg | $113.00 | ||
Metalaxyl-M functions as a pesticide by inhibiting the synthesis of ribosomal RNA in fungi, effectively disrupting their cellular processes. This selective interference targets specific fungal species, leading to stunted growth and eventual cell death. Its unique ability to penetrate plant tissues enhances its systemic action, allowing for effective protection against a range of soil-borne and foliar pathogens. Additionally, Metalaxyl-M exhibits a favorable degradation profile, reducing environmental persistence. | ||||||
Chlorfluazuron | 71422-67-8 | sc-234311 | 250 mg | $110.00 | ||
Chlorfluazuron acts as a pesticide by disrupting the chitin synthesis in insect exoskeletons, leading to impaired molting and eventual mortality. Its unique mode of action targets specific enzymes involved in the biosynthesis of chitin, making it particularly effective against various pests. The compound's lipophilic nature enhances its penetration into insect cuticles, ensuring efficient uptake. Furthermore, its stability in diverse environmental conditions contributes to prolonged efficacy in pest management strategies. | ||||||
Haloxyfop-P-methyl | 72619-32-0 | sc-250078 | 100 mg | $139.00 | ||
Haloxyfop-P-methyl functions as a selective herbicide by inhibiting the enzyme acetyl-CoA carboxylase, crucial for fatty acid synthesis in plants. This disruption leads to stunted growth and eventual plant death, particularly in grassy weeds. Its unique ability to translocate within the plant ensures systemic action, while its formulation enhances absorption through leaf surfaces. Additionally, its low volatility minimizes off-target effects, making it a targeted solution in weed management. | ||||||