
While there is no company that specifically produces nano electricity, there are several companies that are involved in the development of nano-related energy technologies. For instance, HydroGraph Clean Power uses graphene and nano-engineered materials to create energy solutions. The company's Hyperion detonation technology is a closed system that conserves energy, prevents emissions, and is modular and scalable for clients. Additionally, NANO Nuclear Energy Inc. is an advanced nuclear energy and technology company that develops clean energy solutions through Small Modular Reactors (SMRs) and Advanced Nuclear Reactors (ANRs). The company is focused on microreactor technologies, nuclear fuel fabrication and transportation, as well as nuclear applications for space. These companies are at the forefront of innovative energy solutions, utilizing nanotechnology and advanced materials to create sustainable and efficient energy systems.
| Characteristics | Values |
|---|---|
| Company Name | HydroGraph Clean Power |
| Technology | Hyperion detonation technology |
| Graphene Production | Highest purity, nano-engineered for the client, enabling integration of graphene into existing products |
| Graphene Quality | High-yield, industrial graphene produced with minimal energy, no solvents, with virtually no emissions |
| Graphene Purity | 99.8% |
| Graphene Product | "Reactive graphene" with a reactive shell that allows it to chemically combine with other materials |
| Applications | Lubricants, resins, composites, polymers, coatings, batteries, concrete, aerospace, automotive, biomedical and many more |
| Standards | ISO/TS 80004-13:2017: Nanotechnologies — Vocabulary — Part 13: Graphene and related 2D materials |
| ISO/TS 21356:2020: Nanotechnologies — Graphene for electrochemical applications — Specification of characteristics and measurement methods | |
| Verified Graphene Producer Program |
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What You'll Learn

NANO Nuclear Energy Inc
- Portable and other cutting-edge microreactor technologies
- Nuclear fuel fabrication
- Nuclear fuel transportation
- Nuclear applications for space exploration
- Nuclear industry consulting services
Led by a world-class nuclear engineering team, NANO Nuclear Energy Inc. is working on several reactor products, including the KRONOS MMR™ Energy System, a high-temperature gas-cooled reactor, in collaboration with the University of Illinois Urbana-Champaign. Additionally, they are developing "ZEUS", a solid-core battery reactor, and "ODIN", a low-pressure coolant reactor. NANO Nuclear Energy Inc. is also exploring the commercial applications of their developing micronuclear reactor technology in space through their subsidiary, NANO Nuclear Space Inc. (NNS).
Advanced Fuel Transportation Inc. (AFT), another NANO Nuclear subsidiary, is led by former executives from the largest transportation company in the world. AFT aims to provide commercial quantities of HALEU fuel to small modular reactors, microreactor companies, national laboratories, and military programs. HALEU Energy Fuel Inc. (HEF), a third subsidiary, is focused on establishing a domestic source for High-Assay, Low-Enriched Uranium (HALEU) fuel fabrication to cater to NANO Nuclear's microreactors and the broader advanced nuclear reactor industry.
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HydroGraph Clean Power
HydroGraph's Hyperion system is a modular and scalable platform that utilises the lowest amount of energy in the industry while producing no waste. The company's FGA-1 technology improves charge acceptance in lead-acid batteries. Additionally, their reactive graphene product features a reactive shell that facilitates chemical combination with other materials. HydroGraph's graphene products cater to a wide range of applications, including lubricants, resins, composites, polymers, coatings, batteries, concrete, aerospace, automotive, and biomedical industries.
The company has received the Graphene Council's Verified Graphene Producer® certification, which involves rigorous third-party inspections of their production facilities, verification of production methods and volumes, and quality control processes. HydroGraph is only the third company globally and the sole company in the Americas to attain this prestigious certification.
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Triboelectric nanogenerators
TENGs have a wide range of applications, including medical therapies, biomedical applications, energy scavenging, and active sensing. They can be used as mechanical and chemical stimuli to detect sensors and as an electrical source for electronic equipment and devices. TENGs have also been explored for self-powered degradation of chemical pollutants and the development of smart textiles.
The development of TENGs has progressed rapidly over the past decade, with advancements in both theoretical and experimental aspects. TENGs are a breakthrough technique for harvesting mechanical energy, offering high conversion efficiency and flexibility. They can generate a large open-circuit output voltage, making them suitable for various applications.
Companies such as HydroGraph Clean Power have developed innovative technologies in the materials and energy space. HydroGraph's Hyperion detonation technology is a closed system that conserves energy, prevents emissions, and is modular and scalable for clients. Their process produces high-purity, nano-engineered graphene with minimal energy and virtually no emissions, enabling the integration of graphene into existing products.
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Wearable microgrids
The University of California San Diego has developed a "wearable microgrid" that harvests and stores energy from the human body to power small electronics. The technology was reported in a paper published on March 9, 2021, in Nature Communications. The wearable microgrid is built from a combination of flexible electronic parts that are screen-printed onto a shirt. Each part is placed in a way that optimizes the amount of energy collected.
The system consists of three main parts: sweat-powered biofuel cells, motion-powered devices called triboelectric generators, and energy-storing supercapacitors. The biofuel cells are located inside the shirt at the chest and harvest energy from sweat. The triboelectric generators are positioned outside the shirt on the forearms and sides of the torso near the waist. They harvest energy from the swinging movement of the arms against the torso while walking or running. The supercapacitors are located outside the shirt on the chest and temporarily store energy from both devices, which is then discharged to power small electronics.
The wearable microgrid was tested on a subject during 30-minute sessions that consisted of 10 minutes of either exercising on a cycling machine or running, followed by 20 minutes of resting. The system was able to power either an LCD wristwatch or a small electrochromic display throughout each 30-minute session.
The researchers are not limiting themselves to this design and are working on other designs that can harvest energy in different scenarios, such as when the user is sitting in an office or moving slowly outside.
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Nuclear fuel fabrication
NANO Nuclear Energy Inc. (NASDAQ: NNE) is an advanced nuclear energy and technology company focused on developing clean energy solutions. It is an emerging microreactor technology company led by a world-class nuclear engineering team that develops smaller, cheaper, and safer advanced portable carbon-free energy solutions utilizing proprietary novel reactor designs.
NANO Nuclear Energy intends to progress its collaborative research projects towards development, rigs, and models, zero-power reactors, and ultimately towards reactor manufacture and deployments. The company envisions readily replaceable mobile reactors that can be provided to customers, along with operative personnel, to power projects, residential and commercial enterprises, and major development projects.
NANO Nuclear's HALEU Energy Fuel Inc. (HEF) subsidiary is focusing on the future development of a domestic source for a High-Assay, Low-Enriched Uranium (HALEU) fuel fabrication pipeline for NANO Nuclear's own microreactors, as well as for the broader advanced nuclear reactor industry.
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