Surface Treatment Agent with Triazine Ring and Amino Groups
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Solution Overview
Problem
Conventional surface treatment agents lack diversity and are ineffective on a wide range of materials, failing to provide both strong adhesion and reactivity across different materials.
Innovation Solution
A surface treatment agent containing a compound represented by General Formula [V], which includes an M-OH group, an amino group, and a triazine ring, allowing for chemical bonding or physical absorption on various substrates, including metal, ceramic, and high polymerized materials, thereby achieving uniform surface properties.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If conventional surface treatment agents are used, then adhesion to surface is achieved, but reactivity and diversity across different materials are insufficient
Solution Approach 1:
The surface treatment agent of the present invention is designed to work on a wide variety of materials including metals, ceramics, and high polymerized materials. The compound structure contains multiple functional groups (triazine ring, amino groups, and other reactive groups) that enable the agent to adhere and react with different material surfaces, achieving material-independent surface treatment.
Solution Approach 2:
The surface treatment agent employs a composite molecular structure combining triazine rings with multiple amino groups and other functional groups. This composite structure allows the agent to exhibit multiple functions simultaneously - adhesion to surface, chemical reactivity, and broad material compatibility - resolving the contradiction between versatility and reliability.
2Adaptability or versatility
If conventional surface treatment agents are used, then adhesion function is provided, but diversity and reaction capability are poor
Solution Approach 1:
The surface treatment agent incorporates different functional groups at specific positions within the molecular structure. The triazine ring provides core stability and adhesion, while amino groups and other reactive groups are positioned to interact with specific material surfaces, enabling tailored reactivity for different materials while maintaining overall diversity.
3Stability of the object's composition
If surface treatment is applied to achieve material independency, then uniform surface properties are obtained, but conventional agents lack the capability to provide both adhesion and reactivity
Solution Approach 1:
The surface treatment agent merges multiple functional capabilities into a single compound: adhesion to surface through triazine ring interaction, chemical reactivity through amino groups, and broad material compatibility. This unified structure achieves both uniform surface properties and reliable combined adhesion-reactivity performance across different materials.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The agent forms a film with strong adherence and reactivity, enabling uniform surface functions across diverse materials, enhancing manufacturing efficiency by minimizing surface property variations.
Implementation Method 1
the identical surface making-functionalizing agent tightly adheres to the surfaces of the materials or chemically bonds to (reacts with) the surfaces of the materials
Implementation Method 2
the identical surface making-functionalizing agent tightly adheres to the surfaces of the materials or chemically bonds to (reacts with) the surfaces of the materials
Data Source
AI summary
Provided is a surface treatment technique whereby excellent adhering function, excellent reacting function and rich diversity can be established. A surface treatment method that comprises applying a solution containing compound (α) to a substrate and thus providing compound (α) thereon, wherein: said compound (α) has at least an M-OH group and/or a group capable of forming M-OH (wherein M represents a metal atom), an amino group and a triazine ring; one or more said M-OH groups and/or groups capable of forming M-OH (wherein M represents a metal atom) are present; said amino group is bonded to a terminal; one or more said amino groups bonded to the terminal are present; and one or more said triazine rings are present.


