Electrode Potential Calculator

Electrode Potential Calculator MCP Connector for Claude

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Calculate electrode potentials, detection limits, and selectivity impacts for ion-selective electrodes.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides electrochemical calculation tools for ion-selective electrodes (ISEs). It uses the Nernst equation to determine electrode potential based on ion concentration, temperature, and activity coefficients. Users can also determine the detection limit of a sensor and predict how interfering ions will skew readings using the calculate_selectivity_impact tool. It is designed for electrochemical analysis and sensor characterization.

electrochemistrynernstiseion-selectivesensors

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

get_ionic_strength_correction

Calculates the activity coefficient based on the total ionic strength of the solution

calculate_detection_limit

Determines the lowest detectable concentration of the target ion

calculate_selectivity_impact

Predicts how much an interfering ion will skew the potential reading of the target ion

get_electrode_potential

Calculates the theoretical potential of the electrode for a specific ion in a given solution

See how to talk to your AI agent using Electrode Potential Calculator.

What is the electrode potential for a 0.01M ion at 298K with a charge of 1, activity coefficient of 0.9, and slope of 59.16?

The calculated electrode potential is -118.32 mV.

Calculate the detection limit for an analyte with concentration 1e-6, an interfering ion at 1e-3, and a selectivity coefficient of 0.01.

The detection limit is 1.0e-5.

How much will an interfering ion with concentration 0.005 skew the reading if the selectivity coefficient is 0.02 and target concentration is 0.01?

The effective concentration is 0.0101 and the potential error is 0.0001.

You can calculate the theoretical electrode potential using `get_electrode_potential`, determine the detection limit with `calculate_detection_limit`, and assess interference using `calculate_selectivity_impact`.

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