Cyclic Voltammetry Analysis Engine

Cyclic Voltammetry Analysis Engine MCP Connector for Claude

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Analyzes electrochemical voltammetry data to derive peak characteristics, reversibility, and diffusion coefficients.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized analytical engine for electrochemical characterization. It processes potential-current scans to extract critical kinetic and thermodynamic properties of redox-active species. Using tools like analyze_peaks, users can identify anodic and cathodic peak characteristics. The evaluate_reversibility tool determines the electrochemical reversibility of a redox couple, while calculate_diffusion_coefficient applies the Randles-Sevcik relationship to compute diffusion coefficients. Additionally, validate_scan_integrity ensures that voltammetry datasets are physically plausible and continuous.

voltammetryredoxelectrochemistrydiffusionanalysis

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

analyze_peaks

Ensure they have the same length. Identifies critical peak characteristics from a raw voltammetry scan

calculate_diffusion_coefficient

Computes the diffusion coefficient using the Randles-Sevcik relationship

evaluate_reversibility

Determines the electrochemical reversibility of the redox couple

validate_scan_integrity

Ensures the provided voltammetry data set is physically plausible and continuous

See how to talk to your AI agent using Cyclic Voltammetry Analysis Engine.

Analyze these voltammetry scans: potentialScan: [0.0, 0.1, 0.2, 0.3, 0.4, 0.5] and currentScan: [-0.1, -0.2, -0.5, -0.2, -0.1, 0.0]

The analysis identified an anodic peak potential of 0.3V and a cathodic peak potential of 0.1V, with a peak separation of 0.2V.

Determine the reversibility for a system with anodic peak current 0.5, cathodic peak current 0.48, anodic peak potential 0.5, and cathodic peak potential 0.45.

The system is classified as chemically reversible with a current ratio of 1.04 and a potential separation of 0.05V.

Calculate the diffusion coefficient using peak currents [0.1, 0.14, 0.17], scan rates [0.01, 0.02, 0.03], electrode area 1.0, concentration 0.001, and 1 electron.

The calculated diffusion coefficient is 7.25e-6 cm2/s with an R-squared value of 0.998.

It processes cyclic voltammetry data, specifically potential scans and corresponding current scans, to perform electrochemical analysis.

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