Transparent projection screens are widely used across various industries for applications that require overlaying digital content onto real-world environments while maintaining high transparency. However, existing technologies face challenges in balancing transparency, projection quality, and privacy protection. In this work, a novel transparent projection screen is  based on cholesteric liquid crystal (CLC) polymer networks is developed. The CLC networks are designed and fabricated to have a small birefringence to achieve a narrow bandwidth. This allows a selective reflection of designed colors for full-color projection, while allowing other light to transmit. The CLC films, designed with multi-layer CLC networks, selectively reflect red, green, and blue light to achieve high-quality full-color projection while maintaining transparency. The tri-layer CLC film demonstrates an average transparency of 70.2% and a color gamut covering 112% of the sRGB standard, ensuring vibrant and accurate color reproduction. To incorporate privacy protection, a hexa-layer CLC structure is developed, reflecting â100% of RGB light and preventing interior light from escaping, while still allowing ambient outdoor light to pass through. This dual functionality highlights the potential of CLC-based transparent projection films for applications in secure communication, immersive displays, and advanced visual technologies where both transparency and privacy are essential.
Dual-Functional Transparent Projection Film with Privacy Protection via Cholesteric Liquid Crystal Polymer Networks.
通过胆甾型液晶聚合物网络实现隐私保护的双功能透明投影膜
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作者:Dong Jiahui, Broer Dirk J, Liu Danqing
| 期刊: | Macromolecular Rapid Communications | 影响因子: | 4.300 |
| 时间: | 2025 | 起止号: | 2025 Aug;46(15):e2500080 |
| doi: | 10.1002/marc.202500080 | ||
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