Catalyst-Effect-Model

Catalyst-Effect-Model MCP Connector for Claude

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Models chemical reaction rate changes caused by catalysts.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides tools to model how catalysts influence chemical reaction rates. It allows for calculating the rate enhancement factor using calculate_rate_enhancement, generating energy profiles with generate_energy_profile, modeling biological enzyme kinetics via model_enzyme_saturation, and evaluating thermal stability with compare_temperature_sensitivity.

catalysiskineticsarrheniusenzymesthermodynamics

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

calculate_rate_enhancement

Determines how many times faster a reaction occurs when a catalyst is present

compare_temperature_sensitivity

Evaluates how much more (or less) sensitive the catalyzed reaction is to temperature changes

generate_energy_profile

Provides a description of the energy states for both the original and the catalyzed pathways

model_enzyme_saturation

Predicts reaction behavior when the catalyst is a biological enzyme

See how to talk to your AI agent using Catalyst-Effect-Model.

How much faster will the reaction be if the activation energy drops from 50 kJ/mol to 30 kJ/mol at 300K?

The reaction rate increases by a factor of approximately 2.15e+05 due to the reduction in activation energy.

Show me the energy profile for a reaction with 40 kJ/mol uncatalyzed Ea, 20 kJ/mol catalyzed Ea, and -15 kJ/mol enthalpy.

The reactant energy is 0 kJ/mol, the uncatalyzed transition state is 40 kJ/mol, the catalyzed transition state is 20 kJ/mol, and the product energy is -15 kJ/mol.

What is the current velocity if Vmax is 100, Km is 5, and substrate concentration is 10?

The current velocity is 66.67.

You can use the `calculate_rate_enhancement` tool by providing the uncatalyzed activation energy, the catalyzed activation energy, and the current temperature.

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