The future of
clean industrial heat
Our mission is to deliver decarbonised high-temperature heat for industry.
Energy storage is crucial to converting intermittent renewable energy to reliable, efficient and cost-effective clean heat. We’re proving we have the best solution to deliver it.
How SiBox® creates heat
SiBox® is the culmination of over a decade of research and development by 1414 Degrees in silicon based latent heat thermal energy storage.
By harnessing the high temperature capabilities of silicon, the SiBox storage material, called SiBrick™, can convert renewable electricity to zero-carbon heat for industries requiring temperatures above 800°C.
The benefits of SiBox
SiBox can provide reliable, clean heat for industry. Our storage media has high energy storage density, which means it provides consistent high-temperature heat, with a smaller footprint, without need for constant power input – making it a cost-effective solution to replace fossil fuels.
How SiBox can be applied
1414 Degrees’ silicon storage – SiBrick – is the most advanced technology to replace fossil fuels at temperatures above 800°C degrees. This is a requirement of minerals processing and manufacturing industries –including the cement, alumina and iron and steel sectors.
Latest news
Hannam & Partners upgrades 1414 Degrees valuation
Hannam & Partners upgrades 1414 Degrees valuation following silicon nanoparticle technology acquisition London-based investment bank Hannam & Partners has released updated research coverage on 1414 Degrees Limited, raising its target valuation following the...
Unveiling an integrated platform for next-generation battery materials
We have announced a significant technological breakthrough that positions us as a key player in the rapidly expanding battery materials sector. The integration of our SiNTL™ and SiPHyR® technologies opens a pathway to high-performance graphitic anode material for...
SiNTL commercialisation now underway
We have commenced detailed commercialisation planning for the SiNTL aluminium-coated silicon nanoparticle technology following acquisition of the exclusive global licence agreement with the George Washington University (GW).
Contact
Western Plant, Door 1,
1 Watts Road, Tonsley, 5042
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