Imide Compound Structure for Plant Disease Control
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Solution Overview
Problem
Current compounds for controlling plant diseases do not offer sufficient efficacy in effectively managing plant pathogens and pests.
Innovation Solution
Development of imide compounds represented by specific formulas, which can be used as agents to control plant diseases by application to plants or soil, combined with inert carriers in various formulations, to provide effective control against a wide range of plant pathogens and pests.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If existing compounds for controlling plant diseases are used, then disease control is provided, but the control efficacy is insufficient
Solution Approach 1:
The patent applies parameter changes by modifying the chemical structure of existing imide compounds through systematic variations in substituents (R1-R6 groups). By changing parameters such as fluorine substitution positions, hydroxyl group configurations, and alkyl chain lengths, the invention generates a series of derivatives with improved disease control efficacy and broader spectrum of activity against different plant pathogens and pests.
Solution Approach 2:
The patent creates composite chemical structures by combining the core imide framework with various functional groups and substituents. The compound formula (I) integrates multiple chemical moieties including difluoromethyl groups, hydroxyl groups, and various alkyl substitutions, forming composite molecular structures that achieve enhanced and versatile disease control properties.
2Reliability
If new imide compounds are developed to improve disease control efficacy, then control effectiveness increases, but compound complexity increases
Solution Approach 1:
The patent applies segmentation by dividing the complex imide compound into a core structural framework (the imide ring system) and variable substituent segments (R1-R6 groups). This modular approach allows systematic modification of specific segments to optimize disease control efficacy while maintaining the fundamental active pharmacophore, thereby managing overall molecular complexity through structured variation rather than random complexity.
Data Source
AI summary
An imide compound represented by formula (I)[wherein R represents a fluorine atom or a hydrogen atom] has excellent control efficacies against plant diseases.


