1
Country: USA | Funding: $39.4M
Acceleron Fusion is developing muon-catalyzed fusion reactor, using subatomic particles known as muons to lower the heat and pressure required for cold fusion reactions to take place. The startup is hoping that by raising the pressure of the hydrogen isotope mix, and maybe the temperature, it’ll be able to reduce the rate at which muons stick to alpha particles. The hope is to keep enough muons in the mix to catalyze more fusion reactions, ideally enough more that they’ll offset the amount of power required to generate the muons.
Acceleron Fusion is developing muon-catalyzed fusion reactor, using subatomic particles known as muons to lower the heat and pressure required for cold fusion reactions to take place. The startup is hoping that by raising the pressure of the hydrogen isotope mix, and maybe the temperature, it’ll be able to reduce the rate at which muons stick to alpha particles. The hope is to keep enough muons in the mix to catalyze more fusion reactions, ideally enough more that they’ll offset the amount of power required to generate the muons.
2
Country: Japan | Funding: ¥2B
Clean Planet is developing "light hydrogen nuclear energy" technology known as QHe. Originally developed in Tohoku University it uses hydrogen quantum diffusion to generate heat. The diffusion is induced by heating a small amount of hydrogen saturated in nano-sized nickel-based composite material. QHe can provide industrial-scale heat up to 1,000°C. The technology operates with nano-sized nickel- based composite material and a small amount of hydrogen. Clean Planet is currently engineering QHe-powered heat modules that can provide energy to the industrial, commercial, transportation, and residential sectors.
Clean Planet is developing "light hydrogen nuclear energy" technology known as QHe. Originally developed in Tohoku University it uses hydrogen quantum diffusion to generate heat. The diffusion is induced by heating a small amount of hydrogen saturated in nano-sized nickel-based composite material. QHe can provide industrial-scale heat up to 1,000°C. The technology operates with nano-sized nickel- based composite material and a small amount of hydrogen. Clean Planet is currently engineering QHe-powered heat modules that can provide energy to the industrial, commercial, transportation, and residential sectors.
3
Country: Gibraltar | Funding: £9M
ENG8 is a company that has developed a catalysed fusion (LENR), renewable energy technology called the EnergiCell. The fuel source is the water molecule where the ionised H2O molecule supplies the hydrogen ions needed for catalysed fusion. A primary energy release mechanism is a catalysed fusion process where protons and neutrons are fused into atomic nuclei. Energy is released in the form of electricity and heat and with modifications can produce chemical energy in the form of hydrogen and oxygen. The company says, it is able to produce more electrical and/or thermal energy than the system requires to power itself.
ENG8 is a company that has developed a catalysed fusion (LENR), renewable energy technology called the EnergiCell. The fuel source is the water molecule where the ionised H2O molecule supplies the hydrogen ions needed for catalysed fusion. A primary energy release mechanism is a catalysed fusion process where protons and neutrons are fused into atomic nuclei. Energy is released in the form of electricity and heat and with modifications can produce chemical energy in the form of hydrogen and oxygen. The company says, it is able to produce more electrical and/or thermal energy than the system requires to power itself.
4
Country: USA | Funding: $7.8M
Brillouin Energy is developing clean thermal energy systems based on Low Energy Nuclear Reactions technology. The company has spent more than 15 years developing its technology through laboratory research and now operates a pilot manufacturing and development facility in Emeryville, California, dedicated to scale-up, engineering, and production readiness. Its Hydrogen Hot Tube reactor and Q-Pulse control system is designed to produce a safe, zero-emission heat source for industrial process heat, district energy, and distributed power applications.
Brillouin Energy is developing clean thermal energy systems based on Low Energy Nuclear Reactions technology. The company has spent more than 15 years developing its technology through laboratory research and now operates a pilot manufacturing and development facility in Emeryville, California, dedicated to scale-up, engineering, and production readiness. Its Hydrogen Hot Tube reactor and Q-Pulse control system is designed to produce a safe, zero-emission heat source for industrial process heat, district energy, and distributed power applications.
5
Country: India | Funding: $3M
Hylenr develops Low Energy Nuclear Reactor (LENR, aka cold fusion) that enables nuclear interactions within engineered metal lattices that operate near controlled conditions and by using accessible materials. It works by loading hydrogen isotopes into a solid metal lattice and using targeted excitation to trigger fusion reactions at manageable scales. Energy is generated via elemental transmutation - fusion and fission of host material. The reactor emits no radiation - just heat.
Hylenr develops Low Energy Nuclear Reactor (LENR, aka cold fusion) that enables nuclear interactions within engineered metal lattices that operate near controlled conditions and by using accessible materials. It works by loading hydrogen isotopes into a solid metal lattice and using targeted excitation to trigger fusion reactions at manageable scales. Energy is generated via elemental transmutation - fusion and fission of host material. The reactor emits no radiation - just heat.
6
Country: Italy
Prometheus develops micro fusion technology. Its reactor consists of one or more reaction chambers where electrodes, actuators, and fluid intake and discharge devices are installed. It is modular and scalable, allowing configuration in the most suitable dimensions for each application. The operating parameters are managed and monitored in real time. The reaction is triggered using a saline solution and readily available materials. The company says it's suitable for applications ranging from domestic and mobility uses to large-scale industrial plants.
Prometheus develops micro fusion technology. Its reactor consists of one or more reaction chambers where electrodes, actuators, and fluid intake and discharge devices are installed. It is modular and scalable, allowing configuration in the most suitable dimensions for each application. The operating parameters are managed and monitored in real time. The reaction is triggered using a saline solution and readily available materials. The company says it's suitable for applications ranging from domestic and mobility uses to large-scale industrial plants.











