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Uniconazole 95%TC

When applied to rice, uniconazole enhances lodging resistance, regulates plant height while promoting tillering, stimulates root development and intensifies leaf color, strengthens seedlings against environmental stresses, and increases both panicle count and grain weight—thereby ensuring high-quality, high-yield production.
CAS No.: 83657-22-1

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Uniconazole possesses dual activity—regulating plant growth and acting as a fungicide—making it a novel type of plant growth regulator that also serves as a highly effective, broad-spectrum fungicide. Experiments conducted on a wide variety of plants have demonstrated that uniconazole exhibits potent physiological activity in most species, primarily manifested as: enhanced root vigor and reduced plant height; increased yields and improved crop quality; and heightened plant resistance to environmental stressors—such as temperature fluctuations, water availability, and air pollution—as well as to plant diseases.
CAS No.: 83657-22-1
Molecular Formula: C15H18ClN3O
Relative Molecular Mass: 291.78
Main Formulations: 90% and 95% Uniconazole Technical Grade; 5% Uniconazole Wettable Powder; 10% Uniconazole Suspension Concentrate.
Toxicity: Low toxicity.
Physicochemical Properties
The technical grade product is a white crystalline solid with a melting point of 159–160°C. It is slightly soluble in water but readily soluble in organic solvents such as cyclohexanone, dimethylformamide, and dimethyl sulfoxide. It remains stable below 40°C and does not decompose in various solvents or in acidic, neutral, or alkaline aqueous solutions.

Functions and Characteristics
Uniconazole is a triazole-based plant growth retardant and a broad-spectrum, highly efficient plant growth regulator that also possesses fungicidal and herbicidal properties. Its mechanism of action is identical to that of Paclobutrazol; it acts as an inhibitor of gibberellin synthesis. Its functions include controlling vegetative growth, inhibiting cell elongation, shortening internodes, dwarfing plants, promoting lateral bud growth and flower bud formation, and enhancing stress resistance. Its biological activity is 6 to 10 times higher than that of Paclobutrazol; however, its residual level in soil is only one-tenth that of Paclobutrazol, thereby minimizing its impact on subsequent crops.


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