Solar Industry Innovation Through ACENANO Technology
Solar energy is gaining attention as a clean and sustainable energy source, but conventional solar panels still face limitations such as restricted efficiency, heavy weight, and high production costs. Innovative solutions utilizing nanotechnology are overcoming these limitations by maximizing energy conversion efficiency while improving flexibility and energy storage capacity. Our Top-Down Nano technology can process natural materials into uniform nano powders sized 30–900nm (D50 or above) without altering their original taste, aroma, or color, and also provides precision classification technology to separate them into desired particle sizes afterward. This makes it possible to develop high-efficiency solar panels, flexible thin-film solar cells, and high-performance energy storage devices.
In particular, we possess a technology that nano-sizes CIGS (Copper-Indium-Gallium-Selenium) raw materials, improving solar power generation efficiency by more than five times compared to conventional methods. Through this, we are establishing the foundation for ultra-high-efficiency and next-generation solar power generation systems.
| Nano-Enhanced Solar Panels | Existing Problems |
| Conventional solar panels experience a sharp decline in efficiency under low-light conditions, such as cloudy days or indoor environments, limiting power generation. Heat buildup in panels reduces efficiency and makes it difficult to maintain long-term performance. Silicon-based panels are heavy and lack flexibility, limiting installation environments. | |
| Effects of Applying Nano Solutions | |
| When nano-enhanced CIGS materials are applied, power generation efficiency can be improved by more than five times compared to conventional methods, while maintaining high performance even in low-light conditions. Nano thermal management coating can prevent overheating and help maintain long-term performance. By applying an ultra-thin nano light-absorbing layer, or PV cell, light absorption can be maximized, increasing power generation relative to panel area. |
| Flexible Thin-Film Nano Solar Cells | Existing Problems |
| Conventional solar panels can only be installed on flat surfaces, limiting their usability. Silicon panels are heavy and have high transportation and installation costs. | |
| Effects of Applying Nano Solutions | |
| Nano thin-film solar cells are flexible and lightweight, making them attachable to curved and various surfaces. Printable nano solar films can add solar power generation functionality to windows, vehicles, clothing, and more. Transparent nano solar coating can add solar power generation functionality to building windows, vehicle glass, and other surfaces. |
| Nano-Based Energy Storage | Existing Problems |
| Solar power generation makes stable power supply difficult due to irregular energy production caused by day-night differences and weather changes. Lithium-ion batteries have short lifespans and slow charging and discharging speeds, resulting in low storage efficiency. | |
| Effects of Applying Nano Solutions | |
| When nano-enhanced supercapacitors are applied, rapid charging and discharging become possible, helping stabilize solar energy supply. By applying nano lithium-silicon anodes, battery lifespan can be extended by up to five times while reducing energy storage costs. When solid-state nano battery technology is applied, fire risk can be reduced and long-term performance can be improved. |
| Self-Cleaning and Anti-Reflective Nano Coating | Existing Problems |
| Dust, contamination, and raindrops can cover the surface of solar panels, interfering with light absorption and reducing power generation efficiency. Conventional glass reflects part of the light, causing a reduction in power generation efficiency. | |
| Effects of Applying Nano Solutions | |
| When self-cleaning nano coating is applied, dust and water droplets do not easily adhere to the panel surface, reducing maintenance costs. When anti-reflective nano coating is applied, light absorption can increase by 30%, improving power generation efficiency. UV-blocking nano coating extends panel lifespan and helps maintain long-term performance. |
| Large-Scale Expansion and Sustainable Solar Technology | Existing Problems |
| High production costs make it difficult to introduce solar power generation in developing countries and low-income regions. Conventional manufacturing processes use harmful chemicals, which can cause environmental pollution. | |
| Effects of Applying Nano Solutions | |
| Nano-optimized manufacturing processes can reduce material waste and lower production costs. By applying eco-friendly nano materials that replace harmful chemicals, sustainable solar power generation can be realized. Scalable nano solar modules enable low-cost energy production in both urban and rural areas. |
ACENANO’s Top-Down Nano technology enables maximized energy conversion efficiency, increased flexibility, and improved energy storage in the solar industry. In particular, we are leading the next-generation renewable energy market by developing technology that nano-sizes CIGS materials and improves solar efficiency by more than five times.
By maximizing light absorption even in low-light environments, such as cloudy days, early mornings, and late afternoons, it achieves power generation efficiency up to five times higher than conventional panels.
By applying ultra-lightweight and flexible nano thin-film technology, it provides an energy solution that can be used anywhere without location constraints, including building exteriors, curved structures, and portable devices.
Through nano battery technology with increased energy density, charging time is dramatically shortened and lifespan is extended, enabling stored energy to be supplied reliably and continuously whenever needed.
By minimizing light reflection on the surface to increase power generation while enhancing self-cleaning performance to prevent dust and contaminants from accumulating, it minimizes maintenance costs and effort.
By lowering manufacturing costs and adopting nano materials free from environmentally harmful substances, it builds a sustainable energy ecosystem that satisfies both economic efficiency and environmental protection.
Through high-efficiency nano solar technology, ACENANO
is leading the sustainable energy revolution!
Through high-efficiency nano solar technology, ACENANO is leading the sustainable energy revolution!
ACENANO | CEO: Hyejun Jeon
[ Address ]
Seoul Office: Baeksan-Bluewin Building, 157 Jeongneung-ro, Seongbuk-gu, Seoul, Korea
Seoul R&D Center: 1F, APEXEL Nano Science Museum, 63 World Cup buk-ro, Mapo-gu, Seoul, Korea
GMP Factory: 97-87, Daejeon-gil, Songna-myeon, Buk-gu, Pohang-si, Gyeongsangbuk-do, Korea
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