Interactive example · Illustrative data · Nothing is sent or saved
Echem

Built around your electrochemistry

Explore the signal.
Understand the chemistry.

A connected workbench for electrochemical analysis, physical modelling and interpretation. Turn your CV and EIS workflows into organised, traceable research.

Designed for researchers studying redox processes, interfaces and materials.
Explore the CV and EIS examples. No account or upload needed.

Conceptual electrochemical cell with glass, electrodes and blue instrument leads
Electrochemistry concept visual
CV + EISOne connected research workflow.
Physics with experimental context

Relate models to your electrode, conditions and measured response.

Interpretation you can inspect

Bring model curves, residuals and parameter context into the same review.

A continuous research workflow

Move from data to saved setups, results, exports and contextual learning.

Explore the product

Choose the work you want to do.

A quick tour. No upload required.

PotentialCurrentCyclic voltammetry

Cyclic voltammetry

Connect the redox response to your experiment.

Explore peaks, compatible scan-rate studies and supported physical models while keeping inputs and result context together.

Peak readoutsPhysical modelsSaved research context
Open the illustrative CV result →

Illustrative result. Candidate features are subject to accepted scope.

CV tour selected

Explore CV and EIS

Explore more of what your measurements can tell you.

Explore techniques and modules →
CV · CYCLIC VOLTAMMETRY

Connect redox behaviour to physical models.

Bring peak readouts, scan-rate studies and full-current analysis into one research workflow.

  • Peak metrics and comparisons across compatible scan rates
  • Butler–Volmer fitting and comparison of declared reaction hypotheses
  • Model curves, residuals and parameter intervals where supported
EIS · IMPEDANCE SPECTROSCOPY

Explore interfaces across frequency.

Review impedance data and registered circuit models with the context needed to interpret a fit.

  • Nyquist and Bode views with equivalent-circuit fitting
  • Kramers–Kronig consistency checks and fit residuals
  • Parameter uncertainty, saved results and traceable exports

These features describe the existing CV/EIS release candidates. Beta access will include only owner-accepted methods, with eligibility assessed for each dataset.

Where Echem adds value

More connected science. Less fragmented work.

Geometry-aware modelling

Work with qualified physical models that account for electrode geometry, transport and reaction conditions.

Compare explanations

Review compatible reaction hypotheses and their fitted responses together, with parameter support and residuals in view.

Keep the experiment attached

Preserve original data, named setups and the context of saved results, making work easier to revisit and share.

Grow within one workbench

Connect analysis with accepted learning content, then add qualified techniques and modules around the same research records.

One connected product family

Analyse. Understand. Keep learning.

See the full product direction →
CV and EIS example

Echem Suite

Explore experimental responses with physical models, inspect parameter context and organise the next step in your research. Explore CV and EIS in this example.

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Learning example

Echem Learn

Build technique knowledge through guided lessons, interpretation practice and clearly labelled teaching simulations.

Preview the learning connection →
Product direction

A foundation that grows

Discover connects molecular and application design. Evidence brings literature and method intelligence. Pulse connects the wider electrochemistry community. Each joins as its scope is accepted.

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A natural research workflow

Start small. Keep the whole experiment in view.

Bring in a dataset

Start in your Inbox. Organise it into a project when that helps you.

Choose an eligible method

Confirm required experimental inputs. Open advanced controls when you need them.

Review and return

Save your setup and result, explore the interpretation and return to the same analysis later.

See how the workflow fits your research.

Explore the examples and learn what to expect from the beta. This example does not register your interest or create an account.

Explore early access ↗