Applications
Human diagnostics.
Detect what conventional
electrodes miss.
Gii gives diagnostic developers a porous pure carbon foam electrode with the surface area, conductivity and reproducibility needed to detect low-concentration biomarkers at the point of care.
Where Gii is used
Diagnostic areas built on Gii
Five areas where developers are already designing Gii electrodes into human diagnostic tests.
Sepsis and Inflammation Diagnostics
Rapid quantification of inflammatory markers where minutes change the clinical decision, at concentrations conventional carbon inks struggle to resolve.
Metabolic Health Diagnostics
Routine and continuous metabolic testing on commercially viable disposable strips, with the reproducibility needed for longitudinal monitoring.
Endocrine and Hormone Diagnostics
Low-abundance hormone panels benefit directly from Gii's high active surface area and clean, binder-free electrode chemistry.
Infectious Disease Diagnostics
Antigen, antibody and nucleic acid formats on a single electrode platform, with microheaters available for on-strip thermal steps.
Wellness Diagnostics
Consumer and near-patient wellness testing designed to support frequent, repeat measurement.
Why
.
Laboratory sensitivity in a disposable strip

Lower limits of detection
Porous pure carbon foam grown directly onto the substrate gives a far larger active surface than screen-printed carbon.

Any assay format
Immunoassay, aptamer, enzymatic and nucleic acid chemistries, in single or multi-analyte configurations.

Reproducible at volume
One consistent electrode specification, manufactured in the UK and scaled from feasibility to routine supply.
Next step
Go deeper on the technology
Applications point the way; the platform pages hold the technical detail and supporting evidence.
Multi-analyte Sensing
Electrode arrays, surface chemistry options and characterisation data.
Learn moreMicroheaters & Thin Film Heating Elements
On-strip thermal control for molecular and sample-prep steps.
Learn moreFlexible Printed Batteries
Thin, flexible printed electrodes to power single-use and connected diagnostic devices.
Learn more
