INNOVATIVE MATERIAL
DEVELOPMENT


DE-MATERIALISM

Our advances in intelligent adaptive materials that contribute to sustainable, social and economic growth.
Harnessing the power of technology to bring people closer to each other, closer to Earth building more resilient, safer & sustainable societies without limitations.
4 functions with energy harvest material back up
- TENG (Triboelectric Nano Generator)
- TENG can be used for various UX such as lighting,sensing.
- Hardness
- Bistable thermal induced shape memory form material to support movement.
- Friction
- Thermal induced hard-soft change material to vary the friction status.
- Shape
- Shape controlled material that reacts to environment change.
- Permeability
- Transparent permeability controlled material based on triboelectric air filtration.
small (people) to large (earth) scale apprications

Direct energy harvesting by TENG

Click here for the description of the video content.
Demo shows Triboelectric nanogenerator changing the state of a bi-stable display in tapping mode.

Click here for the description of the video content.
Demo shows voltage achieved by Triboelectric nanogenerator in fluttering mode.
HARDNESSACCESSIBILITY

Click here for the description of the video content.
Adaptive hardness by thermal induced shape memory form could be used for rehabilitation, support and performance enhancing applications.
FRICTIONACCESSIBILITY

Click here for the description of the video content.
Thermal induced hard-soft change material to vary the friction status to improve grippy-ness in a prosthesis.
SHAPEDe-Centralization

Click here for the description of the video content.
Shape changing material could autonomously respond to environmental changes such as, sunlight, heat, wind and darkness.
PERMEABILITYACCESSIBILITY

Click here for the description of the video content.
Harvest the energy from periodic movement induced by human breath to create electrostatic absorption. Tribo-electric filtration allows us to create lighter, semi-translucent materials that are highly efficient at filtering harmful matter.

Experimental data on transparency and efficiency of permeability is shown. The upper is the developed material, and the lower is the FFP2 mask that conforms to the EN149 standard.
Despite the transparent 80μm thin film, the developed material shows almost same filtration efficiency as the FFP2 mask with a 350μm thick film.
DEVELOPMENT SCOPES

