Understanding the Role of Paclobutrazol Intermediates

Discover the essential chemical building blocks that drive advanced plant growth regulation technologies.

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Key Benefits

High Purity Intermediate

Ensuring the CAS 107021-84-1 synthesis results in a pure compound is vital for the efficacy of downstream plant growth regulators.

Essential for Paclobutrazol Production

As a key precursor, understanding the intermediate for paclobutrazol production is fundamental for agricultural chemical manufacturers.

Quality Control in Agrochemicals

Sourcing reliable 1-(4-chlorobenzyl)-1-(1H-1,2,4-triazol-1-yl)-butan-1-one intermediate is paramount for maintaining stringent quality control in the agrochemical sector.

Key Applications

Agrochemical Synthesis

This compound is integral to the precise synthesis of advanced plant growth regulators, contributing to improved crop management practices. Leveraging 1-(4-chlorobenzyl)-1-(1H-1,2,4-triazol-1-yl)-butan-1-one supplier networks ensures a stable supply chain.

Plant Growth Regulation

As a precursor to Paclobutrazol, it directly influences crop development by managing plant height, enhancing stress resistance, and promoting yield. Understanding its intermediate for paclobutrazol production role is key.

Specialty Chemical Manufacturing

Its role extends to the broader specialty chemical industry, where precise organic synthesis is required for high-value products. Exploring buy plant growth regulator intermediate options is strategic for this sector.

Research & Development

The defined chemical properties make it valuable in R&D for developing new plant growth regulators and optimizing existing ones, highlighting the importance of reliable CAS 107021-84-1 synthesis.