A connected workbench for electrochemical analysis, physical modelling and interpretation. Turn your CV and EIS workflows into organised, traceable research.
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.
Explore experimental responses with physical models, inspect parameter context and organise the next step in your research. Explore CV and EIS in this example.
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.
Analyse, understand, learn and explore. A focused CV/EIS beta starts a platform designed to grow with your research.
Echem Suite
Analyse and Understand. Combine CV peak readouts, scan-rate studies, supported physical fitting and reaction-hypothesis comparison with EIS circuit fitting, Nyquist/Bode views and consistency checks. Keep setups, model curves, residuals and saved results together. Explore the example workbench.
CV and EIS example
Echem Learn
Build technique knowledge in context. Explore foundations, CV/EIS/CA/CP learning journeys, interpretation practice and bounded tutoring in the existing content candidate. Clearly labelled teaching simulations support learning. Preview the connection to your result.
Content candidate
Echem Discover
Explore candidates before the next experiment. Planned Redox Matcher, solubility and molecular/application design tools bring chemistry and application requirements into the research workflow.
Planned module
Echem Evidence
Connect questions to published knowledge. Planned shared literature, patent, method and citation intelligence supports the product family, alongside the traceability of individual analyses.
Planned shared service
Echem Pulse
Stay connected to opportunities. Planned electrochemistry updates, funding, jobs and events, with clear sources and editorial review.
Planned public area
A platform that grows with your research
New techniques. The same research home.
Extend the measurements you can explore
CA/CP is an experimental preview in its own science workstream. SWV/DPV, LSV/Tafel, rotating-electrode methods, AFM/EC-STM and later single-molecule analysis remain on the roadmap.
Keep continuity as tools arrive
Qualified additions join the shared scientific foundation and existing accounts, projects and saved results. Users see the tools available to them in the workbench.
Clear access and feature status
CV/EIS analysis, Learn content and each future capability have their own acceptance scope. Candidate and planned features are presented here for review; this offline preview activates no scientific method or account access.
Open your Inbox, bring in a supported CV or EIS file, inspect the column mapping and units, then choose a method. This preview uses a fixed example and cannot accept research files.
Do I need to create a project first?
Start with a dataset in your Inbox. Projects help you group related experiments and results.
What does a fit tell me?
A fitted curve must be interpreted with the model assumptions and warnings. An attractive fit alone does not prove a mechanism or establish that every parameter can be identified.
Can I return to the same result?
Saved results retain their dataset, method and build identity. Reanalysis creates a new result; it does not silently replace the historical one.
How will beta access work?
Beta access is by invitation. The form in this example does not send a request or create an account.
Where do I report a problem?
When reporting a problem, describe what happened and include the relevant result reference if useful. This example does not send support messages.
Early access example
Explore the research workflow.
Try the example to see how measurements, analysis and saved results fit together.
The beta focuses on CV and EIS, with learning content alongside your research.
What you can explore
Try an import, review an analysis, save and reopen a result, and tell us where the workflow is confusing. Method assumptions and limitations remain part of the analysis.
This is an interactive example. Invitations and account access are managed separately.
Explore an ideal-circuit illustration. No experiment or fit has been performed.
Impedance across frequency
One spectrum. Two complementary views.
Analytical illustration
Illustration only. Values come from the explicitly specified ideal RC circuit. This view contains no measured spectrum, fitted parameters, residuals or validity assessment.
Numeric plot alternative
Same illustrative spectrum as both plots. Values rounded for display; CSV retains numeric precision.
Existing password and email-link access should lead to the same permanent account. Invitation restrictions and reliable recovery email must be verified before external beta.
Passwords and one-time links are deliberately absent from this fixture.