Remarkable Thermochromism in the Double Perovskite Cs2NaFeCl6

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Abstract

Lead-free halide double perovskites (HDPs) have emerged as a new generation of thermochromic materials. However, further materials development and mechanistic understanding are required. Here, a highly stable HDP Cs2NaFeCl6 single crystal is synthesized, and its remarkable and fully reversible thermochromism with a wide color variation from light-yellow to black over a temperature range of 10 to 423 K is investigated. First-principles, density functional theory (DFT)-based calculations indicate that the thermochromism in Cs2NaFeCl6 is an effect of electron–phonon coupling. The temperature sensitivity of the bandgap in Cs2NaFeCl6 is up to 2.52 meVK−1 based on the Varshni equation, which is significantly higher than that of lead halide perovskites and many conventional group-IV, III–V semiconductors. Meanwhile, this material shows excellent environmental, thermal, and thermochromic cycle stability. This work provides valuable insights into HDPs' thermochromism and sheds new light on developing efficient thermochromic materials.

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Ji, F., Klarbring, J., Zhang, B., Wang, F., Wang, L., Miao, X., … Gao, F. (2024). Remarkable Thermochromism in the Double Perovskite Cs2NaFeCl6. Advanced Optical Materials, 12(8). https://doi.org/10.1002/adom.202301102

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