At the flick of a switch, prompted by a low voltage, the liquid crystals change their orientation instantly to regulate the amount of light and heat passing through the glass. The glass always remains transparent, so even in a darkened state, natural light is preserved, and the outside view is retained.
Our solar shading glass contains a transparent liquid crystal mixture with specific dye molecules. This mixture is placed between two glass sheets coated with a transparent conductive film.
This system significantly improves the operating temperature range of sunlight-driven smart windows based on liquid crystals: the transparent–scattering transition is observed at 4–42 °C. The present mechanism allows development of autonomous and wireless smart windows adaptable to various environments.
Cite this: ACS Appl. Mater. Interfaces 2024, 16, 22, 28638–28644 Photoresponsive liquid crystals are promising materials for sunlight-driven smart windows, which can automatically change their optical states in response to sunlight and control energy flow between the inside and outside of a building.
Our solar power systems and energy storage products are engineered for reliability, safety, and efficient deployment. All systems include comprehensive monitoring and control systems with remote management capabilities.
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