Catalytic Cycle Analyzer

Catalytic Cycle Analyzer MCP Connector for Claude

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Analyze organometallic catalytic cycles, kinetics, and stability.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for organometallic chemistry. It allows AI agents to model catalytic cycles, identify the rate-determining step using analyze_cycle_kinetics, and quantify productivity through calculate_catalytic_efficiency. Additionally, users can assess degradation risks with evaluate_deactivation_impact and predict structural integrity via map_catalyst_stability.

organometallickineticscatalysischemistry-toolsreaction-modeling

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

analyze_cycle_kinetics

Determines the sequence of steps and identifies the bottleneck in the catalytic process

calculate_catalytic_efficiency

Quantifies the productivity of the catalyst under specific conditions

evaluate_deactivation_impact

Assesses how much the catalyst's productivity is reduced by competing degradation pathways

map_catalyst_stability

Predicts the structural stability of the catalyst against common degradation routes

See how to talk to your AI agent using Catalytic Cycle Analyzer.

Analyze the kinetics for a palladium-catalyzed cross-coupling cycle with steps: oxidative addition, transmetallation, and reductive elimination.

The catalytic cycle consists of three steps. The rate-determining step is transmetallation, which acts as the kinetic bottleneck for this transformation.

Calculate the efficiency for a catalyst with a rate-determining step rate of 0.05 s⁻¹, a concentration of 0.01 M, and a reaction time of 3600 seconds.

The Turnover Frequency (TOF) is 5.0 s⁻¹ and the Turnover Number (TON) is 18000.

Predict the stability of the catalyst structure [Pd(PPh3)4].

The stability score is 0.75. The primary risk factor is ligand dissociation, which may lead to coordinative unsaturation.

You can use the `analyze_cycle_kinetics` tool to determine the sequence of elementary steps and identify the specific rate-determining step.

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