
Finally
Affordable Green Hydrogen Production
Fit for Renewables
The clean energy economy depends on it.
Lowest
LC H
the first electrolyzer designed from day 1 for
direct connection
direct connection
to renewables
to renewables
The cheapest electricity comes from direct connection
to solar and wind. But this power source is
extremely variable and sometimes completely unavailable.
The cheapest electricity comes from direct connection
to solar and wind. But this power source is
extremely variable and sometimes completely unavailable.
Where traditional electrolyzers must connect to the grid or batteries because it is unsafe to shut off, H2Pro's Decoupled Water Electrolysis (DWE) is able to safely sleep and wake up with the sun.
Where traditional electrolyzers must connect to the grid or batteries because it is unsafe to shut off, H2Pro's Decoupled Water Electrolysis (DWE) is able to safely sleep and wake up with the sun.
DWE
H2Pro's Tech is not afraid of the dark
The cheapest electricity comes from direct connection to solar and wind.
But this amazing power source is
extremely variable with low capacity factors.
The cheapest electricity comes from direct connection to solar and wind.
But this amazing power source is
extremely variable with low capacity factors.
Tapping into this resource for green hydrogen production requires
a new way of approaching electrolysis.
a new way of approaching electrolysis.
AEL
PEM
DWE
Where traditional electrolyzer struggle, H2Pro's Decoupled Water Electrolysis (DWE) was designed to capture the curve.
Where traditional electrolyzer struggle, H2Pro's Decoupled Water Electrolysis (DWE) was designed to capture the curve.

MEET THE DWE ELECTROLYZER
Ready to pair with a green, new world
H2Pro's technology solves the two biggest challenges facing the green hydrogen economy: direct connection to renewables and cost of production. Our decoupled, membraneless electrolyzers defy limits, offering flexible operations and design to deliver the most affordable, and truly green hydrogen.

Technology Benefits
How DWE will deliver the lowest LCOH
Ultra-low CAPEX
Ultra-low CAPEX
No Membrane
Two-phase process separates gases naturally, eliminating fragile, costly membranes.
Low-Cost Materials
Operates at ambient temperature, enabling use of inexpensive plastic-based stacks.
→ Why it matters
Removes the most expensive, degradation-prone parts of traditional electrolyzers, simplifying assembly and driving system and maintenance costs down.
No PGM
With Nickel-based electrodes, there is no use of costly, scarce platinum group metals.
No PFAS
Eliminates harmful PFAS chemicals entirely.
→ Why it matters
Reduces CAPEX, secures the supply chain, and makes the system safer and more sustainable — with no risk of regulatory bans or shortages.
Hyper-flexible
Hyper-flexible
Unlimited On/Off
DWE powers ON or OFF instantly with no degradation penalties, enabling unlimited, immediate start-ups.
Quick ramp up and down
Responds in real time to changes in power input, quickly adjusting production levels.
→ Why it matters
When the sun sets, production pauses safely. When it rises, operations resume immediately — no batteries or grid backup needed. When connected to an unpredictable grid, it means the freedom to capture only the most profitable power windows.
Wide load range
Operates efficiently across a broad spectrum of input levels, with the lowest industry minimum working point.
High Efficiency at partial loads
Maintains high efficiency at partial loads using a unique stack design that minimizes shunt currents.
→ Why it matters
Renewable energy rarely arrives at full power. Most of the time it comes as partial loads. Where other systems must supplement the power load, DWE continues to operate independently and efficiently, ensuring continuous and cost-effective hydrogen output.
Recognition & Awards

Shell New Energy Challenge
Winner - 1 out of 3000
Time & Statista
Winner Top Greentech Company

BloombergNEF Pioneer
Award recipient

ADIPEC Awards
Winner - Transformative Hydrogen Project
Scientific Journals

Who We Are
We're a multidisciplinary team working every day to make green hydrogen affordable at scale
Headquartered in Caesarea, Israel, H2Pro was founded in 2019 based on years of research at the Technion. Our diverse team includes top engineers and scientists, steered by seasoned leadership with a track record of transforming startups into global enterprises. From our various backgrounds, we are united by a deep commitment to create a more sustainable world together.





























































