Wettability & Contact Angle Analyzer

Wettability & Contact Angle Analyzer MCP Connector for Claude

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Calculate surface energy, work of adhesion, and spreading coefficients using contact angle data.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized computational tools for surface science. It uses the Owens-Wendt and Fowkes models to determine the total surface energy and its dispersive and polar components from contact angle measurements. Users can calculate the work of adhesion and the spreading coefficient for specific liquid-solid pairs, and categorize the resulting wettability regime. Key tools include calculate_surface_energy for component breakdown, calculate_adhesion_metrics for adhesion strength, and analyze_wettability_regime for behavior classification.

surface-sciencewettabilitycontact-anglesurface-energyphysics

4 tools expose this connector's capabilities to your AI agent.

analyze_wettability_regime

Categorizes the wettability behavior of a liquid-solid pair

calculate_adhesion_metrics

Calculates the work of adhesion and the spreading coefficient for a specific liquid on a known surface

calculate_surface_energy

Determines the total surface energy and its component breakdown using the OWRK/Fowkes models

validate_measurement_consistency

Checks if the provided contact angle measurements and surface tension components are physically consistent with the OWRK model

See how to talk to your AI agent using Wettability & Contact Angle Analyzer.

Calculate the surface energy using two liquids: Water (total 72.8, dispersive 21.8, polar 51.0) and Diiodomethane (total 50.8, dispersive 50.8, polar 0.0) with contact angles of 45 and 10 degrees.

The calculated total surface energy is 42.5 mN/m, with a dispersive component of 28.2 mN/m and a polar component of 14.3 mN/m.

What is the spreading coefficient for a liquid with total surface tension 30, dispersive 25, and polar 5 on a solid with surface energy 50, dispersive 40, and polar 10, given a contact angle of 20 degrees?

The spreading coefficient is 15.0 and the work of adhesion is 42.4 mN/m.

Determine the wettability regime for a contact angle of 110 degrees and a spreading coefficient of -15.

The wettability regime is Non-wetting.

The server implements the Owens-Wendt-Rabel-Kaelble (OWRK) and Fowkes models to solve for dispersive and polar components.

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