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AE

Adden Energy

Adden Energy produces a dynamically‑stable solid‑state battery that self‑heals its separator, uses a porous lithium‑metal anode and advanced cathode chemistry, and is designed with AI‑assisted tools. The cells charge as quickly as refueling a gasoline car, offer higher range and safety than lithium‑ion batteries, and lower cost per kilowatt‑hour, making them suitable for electric vehicles and other AI‑driven platforms such as drones, robotics, and data‑center power systems.

Cambridge, United KingdomFounded 2021215K+ followers
Updated 2 months ago

Funding

$15M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

2OAO
Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Current electric vehicle (EV) adoption is limited by battery technologies that have long charging times, high cost per kilowatt‑hour, safety concerns, and limited range compared to internal‑combustion vehicles. These constraints also restrict the use of batteries in other AI‑driven mobility applications such as drones, robotics, and data‑center power systems.

Solution

Adden Energy has developed a “dynamically‑stable” solid‑state battery that incorporates self‑healing solid‑state separators, a porous lithium‑metal anode, enhanced cathode materials, and AI‑driven cell design. The resulting cells charge in the time required to fill a gasoline tank, deliver a driving range that exceeds conventional gasoline cars, and achieve a million‑mile lifetime with non‑flammable components. The technology also lowers the cost per kilowatt‑hour and can be manufactured at scale, enabling broader deployment in EVs and other high‑performance, AI‑driven platforms.

Target Audience

Primary customers are automotive manufacturers and tier‑1 suppliers developing electric vehicles, as well as companies building AI‑driven mobile platforms (e.g., drones, robotics, and data‑center power solutions) that require high‑energy, fast‑charging, and safe battery systems.

Features

  • Self‑healing solid‑state separator enabled by dynamic stability, providing intrinsic safety and longevity
  • Porous lithium‑metal anode and advanced cathode chemistry for high energy density and fast charging
  • AI‑assisted design interface that optimizes cell architecture and material selection
  • Non‑flammable, 100 % solid‑state components delivering unparalleled safety compared to lithium‑ion batteries
  • Manufacturing‑ready cell structure that reduces cost per kilowatt‑hour and supports high‑volume production
  • Capable of supporting diverse applications such as EVs, drones, robotics, and data‑center power systems
This profile is AI-generated and may contain inaccuracies.