Applications
Emerging devices.
A new electrode
for formats that
do not exist yet.
Printed energy storage is opening device categories that rigid cells never allowed. Gii gives developers a flexible, binder-free, high surface area electrode to prototype with and a UK manufacturing route once the format proves out.
Where Gii is used
Where developers are taking Gii
Five directions in early-stage development, each drawing on the same printed electrode.
Single-Use Medical
Disposable instruments and delivery devices that need integrated power designed for single-use formats.
Lab-on-Chip
Self-powered cartridges combining storage, heating and sensing produced in one process.
Printed Electronics
Displays, indicators and interactive surfaces where Gii electrodes integrate with printed layers to create thin, flexible device architectures.
Micro Energy Systems
Harvesting and buffering combinations for devices with no charging opportunity in their lifetime.
Novel Form Factors
Curved, ultra-thin and irregular devices whose geometry rules out any off-the-shelf cell.
Why
.
A prototyping electrode with a production route behind it

Geometry is not a constraint
Gii is grown and patterned on flexible substrates, so early prototypes are not limited to standard cell shapes.

Battery and supercapacitor behaviour
One material supports both energy and power density formats, so device concepts can be tested either way.

Scales when you do
Prototype with Gii in an accessible R&D format, with a pathway to application-specific specifications and scalable manufacturing as your product develops.
Next step
Go deeper on the technology
Applications point the way; the platform pages hold the technical detail and supporting evidence.
Flexible Printed Battery Electrodes
Electrode formats, substrates and integration support for printed cells.
Learn moreMicroheaters & Thin Film Heating Elements
Combine heating and storage in a single printed device stack.
Learn moreMulti-analyte Sensing
Electrode arrays, surface chemistry options and characterisation data.
Learn more
