Energy Storage. Gnanocaps

Unleashing the Power of Gnanomat’s Advanced Materials

GnanoCaps technology represents a groundbreaking advancement in energy storage, built on Gnanomat’s cutting-edge materials. Compared to ordinary symmetrical supercapacitor technology, GnanoCap, with a hybrid configuration, makes it possible to increase capacitance at least twice with conventional supercapacitors, and thus increase energy with a lower environmental impact thanks to the use of more eco-friendly and non-critical materials (like lithium or organic electrolytes). This innovation achieves extraordinary capacitance performance within the supercaps/pseudocaps area of the Ragone chart, setting a new standard for energy storage devices. By leveraging Gnanomat’s advanced materials, GnanoCaps delivers superior performance, pushing the boundaries of what’s possible in energy storage technology.

 Prototype Materials Capacitance (F)  Energy (Wh/kg)

Power

(W/kg)

Commercial Activated carbon/ organic electrolyte C E P
Gnanocaps Hybrid materials/aqueous electrolyte 2C-4C 1.5-2E P

*Values achieved from pouch cell prototypes

Enhanced Performance Beyond the Status Quo

GnanoCaps technology outperforms conventional energy storage solutions such as Electric Double-Layer Capacitors (EDLCs) and Lithium-Ion (Li-ion) batteries in key performance metrics. Offering higher energy density while retaining the fast power delivery of traditional capacitors, GnanoCaps provides enhanced capabilities for energy storage applications across various industries.

The Ideal Alternative for High-Demand Applications

GnanoCaps are specifically designed to meet the needs of applications requiring higher energy density than EDLCs, without sacrificing the power capabilities that make capacitors an attractive solution. This makes GnanoCaps the ideal alternative for next-generation energy storage systems that demand both efficiency and performance.

Safety and Sustainability at the Core

One of the most compelling features of GnanoCaps technology is its commitment to safety and sustainability. GnanoCaps are built using non-toxic components and are inherently safe, with no risk of explosion  avoiding the use of highly flammable and volatile conventional electrolytes. This makes them an attractive solution for environments where safety is critical. They open up new opportunities for use cases in sensitive environments, including aircraft, airports, and ATEX-certified zones, where safety and reliability are non-negotiable.

 avoiding hihly flammable and volatile conventional electrolytes

GnanoCaps Applications & Market Opportunities

  • AGVs in ATEX Environments
    GnanoCaps technology is ideal for Autonomous Guided Vehicles (AGVs) operating in ATEX atmospheres, meeting the latest safety restrictions and regulatory standards. Their enhanced performance and safety features make them perfect for demanding environments where traditional energy storage solutions fall short.
  • Eco-Restricted Environments & Applications
    GnanoCaps are designed for applications in eco-restricted environments, where sustainability is paramount. The technology’s non-toxic and environmentally friendly components make it an excellent choice for energy storage solutions that align with modern sustainability goals.
  • Backup Energy Storage Integration
    GnanoCaps can be integrated as a backup energy storage (ES) solution alongside other energy storage technologies. Their ability to seamlessly complement existing systems makes them a versatile option for both current and future applications, ensuring reliability and stability in critical energy storage infrastructures.

Explore the power of GnanoCaps today—pioneering a new era in energy storage technology that delivers superior performance, safety, and sustainability for tomorrow’s applications.