Impact Across Industries
Powered by Lyten 3D Graphene™
Cleaner energy, better materials, and smarter sensors that redefine how we power, move, build, and monitor our planet.
Annual Impact Reporting
Each year, Lyten publishes an impact report on our environmental, safety, and social performance. It sets out what we measure and what the numbers show, including where gaps remain. We signed The Climate Pledge in 2024, committing to net zero by 2040, and these reports track our progress against that goal. Our 2024 report established a baseline for a single site. The 2025 report, covering the calendar year, widens that boundary to four California facilities and adds our first measured Scope 3 emissions.
Message from Leadership
At Lyten, we pride ourselves in being the building blocks of critical infrastructure. Our products touch everything from AI data centers, to automotive, to unmanned autonomous systems, to concrete infrastructure, to power grid stabilization, to emissions monitoring, to defense infrastructure and the list keeps going. The common theme is that we lean into materials science breakthroughs and product design innovation that can allow us to build safer, stronger, lighter and cleaner versions of what infrastructure is built and runs on.
2025 was a turning point for Lyten, falling exactly 10 years into our journey. In 2025, we dramatically accelerated the commercialization of our products by acquiring manufacturing assets and intellectual property from Northvolt in Poland and Sweden. The Polish transaction completed in October 2025. The Swedish transaction was agreed in August 2025 and completed in the first quarter of 2026. This transaction gives us one of the largest battery manufacturing sites in Europe (Sweden), the largest battery R&D center in Europe (Sweden), and the largest battery energy storage manufacturing facility in Europe (Poland).
Across both sites we are restarting plants, retaining skilled talent, and returning manufacturing jobs to the communities around them. Our team grew to nearly 500 across the United States, Sweden, and Poland by the end of 2025, and continues to grow.
Battery energy storage has moved from being a climate technology to now being a critical piece of global infrastructure. Energy security, economic security, and national security all now require battery energy storage. We believe that we cannot have single country dependency for any piece of critical technology, but today, that is exactly the challenge faced for batteries.
We are building US and European battery manufacturing, scaling localized supply chains, and with our lithium-sulfur battery technology, eliminating dependency on critical mined minerals like nickel, manganese, cobalt and graphite.
Beyond batteries, our materials innovations are being put to work in a range of new products. Our S Cure concrete admixture can allow builders to use less cement, one of the largest industrial sources of CO2, and extends the durability and service life of critical structures like roads, bridges and buildings. Our Lyten M Sense™ sensors surface methane leaks as they happen at landfills, energy sites, and industrial facilities, turning fugitive emissions from an estimate into a problem that can be fixed. Our 3D printing filaments and structural adhesives cut weight without sacrificing strength in motorsports, autonomous systems, and UAVs; every kilogram removed lowers the energy needed to move a vehicle for the rest of its service life, and parts printed on demand reduce tooling, transport, and held inventory.
This report reflects a company mid-expansion. Our 2025 footprint covers our California operations, broadened from last year’s single-site baseline, with our first Scope 3 disclosure. Going forward, we aim to bring our remaining U.S. sites and newly-acquired European operations into our reporting. The picture sharpens each year, and this is the baseline we will be measured against as we work toward Net Zero by 2040, in line with The Climate Pledge.
2025 at a glance
8,946.25 tCO₂e
Total Scope 1, 2, and 3 emissions across four California sites, up from one site in our 2024 baseline.
70% diverted
Non-hazardous waste recycled or composted rather than landfilled.
*Estimated from hauler container sizes and pickups; San Jose & Fremont locations.
59% renewable
Renewable share of purchased electricity across 4 reported California sites.
*Calculated from each electricity supplier’s published renewable mix; see the 2025 Impact Report, p. 24.
First Scope 3
Categories 1, 2, 3, 5, 6, and 7 disclosed for the first time.
2040
Our Net Zero target year for Scope 1 and 2 emissions, in line with The Climate Pledge, signed in 2024.
2035
Our target year for 100% renewable electricity across operations.
Impact Across Product Lines
—— LYTEN’S CORE TECHNOLOGY
Lyten 3D Graphene™
Lyten 3D Graphene™ is produced produced from methane and natural gas that would have been released had the same gas been burned. The process splits the feedstock into hydrogen and solid carbon, holding roughly 2.5 kilograms of CO₂ equivalent per kilogram of 3D Graphene* in a stable solid rather than releasing it as combustion products. The same platform underlies Lyten’s lithium-sulfur batteries, composites, concrete admixture, and sensors.
*Lyten estimate, based on the carbon content of 3D Graphene and the emissions of the production process.
—— UAVS. DEFENSE. MICROMOBILITY. AUTOMOTIVE.
Lithium-Sulfur Batteries
Lyten’s Lithium-Sulfur cells contain no nickel, cobalt, manganese, or graphite. Sulfur, a widely available by-product of oil and gas processing, and Lyten 3D Graphene replace the mined metals conventional lithium-ion depends on, which can shorten the supply routes behind the cell. A third-party life-cycle assessment placed the cradle-to-gate footprint at 41 kg CO₂e/kWh, lower than all 28 chemistries reviewed across 11 peer-reviewed studies, against a surveyed mean of 119.*
*Lyten-commissioned, 2023 lab/demo data, no ISO 14044 critical review.
—— RENEWABLES. REMOTE SITES. CRITICAL FACILITIES.
Energy Storage
Demand for power is growing faster than grids can deliver it, and storage at the edge lets a site meet that demand with lower-cost electrons. The Voltpack Mobile System scales from 280 kWh to hundreds of MWh and pairs batteries with whatever power a site already has: grid, generator or solar. It holds midday solar that would otherwise be curtailed and dispatches it into the evening peak, so sites can buy less power at peak prices and burn less diesel. Where the grid is weak or absent, VMS can run a microgrid on its own, holding voltage and frequency the way a diesel generator does today.
—— LANDFILLS. INDUSTRIAL SITES. AND BEYOND.
Lyten M Sense Methane Sensing
Methane is about 80 times as potent as CO₂ over a 20-year horizon, and the difficulty is detection rather than repair. Scheduled inspections capture a single moment weeks apart, and satellites miss smaller sources. Lyten M Sense replaces those snapshots with a continuous record, so leaks surface as they occur. Solar-powered units with built-in LTE deploy without site power or network infrastructure.
—— INDUSTRIAL FACILITIES. ROADS. BRIDGES. BUILDINGS.
Lyten S Cure Concrete Admixture
Cement accounts for roughly 8% of global CO₂ emissions. Lower-carbon blends cut carbon intensity but delay early strength, so engineers add cement back and spend the savings. S Cure produces a denser matrix that gains strength faster: third-party testing on a Type 1L mix with 25% slag showed a 112% increase at one day. That can allow producers to hit target strength with less cement, which can lower embodied carbon.*
*Carbon benefit depends on mix design.
—— MOTORSPORTS. AEROSPACE. ROBOTICS. MANUFACTURING.
Composites: PA1205 Filament and 6120HT Adhesive
Every kilogram removed from a vehicle lowers the energy needed to move it for the rest of its service life. Both our 3D printing filament and our structural adhesive help build lighter assemblies with less material. Our PA1205 filament reaches 60 MPa tensile strength between printed layers (Z-axis), 43% above standard PA12 carbon fiber, so parts need less added bulk to make up for weak layer seams. The 6120HT adhesive replaces fasteners with a continuous bond, which can cut joint weight significantly where fasteners make up much of the joint mass. The result is a vehicle, drone or robot that can go further on the same battery or fuel.