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Transparent Nanophotonic Films with Dynamic Thermoregulation for Boosting Crop Yields
Yifan Zhang1,2, Haoyu Wang1,2, Ya Sun1,2
1State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.
None:
Temperature critically governs crop growth. While greenhouses address food security, they rely on energy-intensive temperature control systems. Transitioning to smart, self-regulating greenhouse covers with minimal energy demand is essential for sustainable agriculture. We present a transparent nanophotonic film that maintains crops within a stable and narrow temperature range despite external fluctuations, enabling energy-efficient, all-weather thermoregulation. The film features a TiO2/Ag/TiO2 antireflection nanostructure deposited on a flexible polydimethylsiloxane substrate, delivering: (i) high visible transmittance with enhanced light diffusion for optimal photosynthesis, (ii) on-demand switching between radiative cooling and heat retention to stabilize temperatures with minimal fluctuations, and (iii) exceptional long-term durability and scalability─collectively boosting crop yields. Outdoor tests confirm reduced air/soil temperature swings versus conventional covers, substantially boosting crop yields by ≥106.4%. Global projections indicate up to 38.3% higher food productivity. This work overcomes traditional greenhouse limitations─accelerating growth, maximizing biomass, and enhancing stress resilience─ushering in sustainable, high-yield agriculture.

