+ PATENTED TECHNOLOGY.
ADVANCED CARBONACEOUS MATERIALS.
We redesigned the carbon production process using microwave-assisted hydrothermal carbonization and pyrolisis — cutting process time from days to under an hour, at a fraction of the energy cost, starting from 100% local agroindustrial biomass.


Use of agri-industrial waste
Abundant, locally sourced biomass, reducing supply risk and contributing to waste valorization.

In-house biomass conversion process
Reducing production time and energy consumption and with control over carbon structures.

Advanced architectures with important applications
Supercapacitors, hybrid systems and Li-ion and Na-ion batteries.
+ PRODUCTS
Meet our advanced carbonaceous materials platform for energy storage systems
Two product families. One proprietary process. Tunable architectures for supercapacitors, hybrid systems and next-generation batteries.

XPORE™ AC
-
Specific surface area >3,000 m²/g
-
High microporosity
-
Excellent cycling stability
-
Low resistance
-
High ions transport
PREMIUM ACTIVATED CARBONS FOR SUPERCAPS AND HYBRID SYSTEMS

GRAPHITIC MATERIALS & HARDCARBONS FOR BATTERIES
XGRAPH Biographite grade batterie & Hardcarbons
-
Produced from biomass
-
Lower energy densinty
-
More localized and resilient supply chain
+ EXTERNALLY VALIDATED. INDUSTRY TESTED
Independently validated by leading research institutions. Also materials currently under evaluation and already valuated by industrial partners across Europe.



+ ABOUT US
A science-driven team with an industrial vision
Behind Empirical Advances is a team of scientists who chose to build. We bring academic rigour into an agile, industry-minded environment — believing that the best materials are born from curiosity, collaboration and a relentless drive to move from the lab bench to real-world impact. We are located at Parque Científico de Madrid.


