R F Wang, Asif Ali Haider, Hongzhi Zhang, Haonan Cui, Yiting Huang, Yuyao Fu, Zizhuo Yao, Shuangbao Wang, Jiyang Xie, Hong Li, Zhi Xie, Jing Zhu
Abstract Highly efficient inorganic phosphors activated with Bi 3+ are increasingly needed due to their fascinating multicolor luminescence and versatile applications. Nevertheless, achieving high external quantum efficiency (EQE) is challenging. Here, ordering A sites in double perovskite structure develops a highly efficient Bi 3+ ‐activated A 2 BB'O 6 phosphor, in which the EQE is boosted by 3.9 times. The transformation from the disordered A sites in Ca 2 LaNbO 6 (CLNO) to the ordered A sites in Ca 2 YNbO 6 (CYNO) occurs via the full substitution of Y 3+ for La 3+ . Bi 3+ activators occupy the A and B sites, which is confirmed by direct aberration‐corrected transmission electron microscopy (AC‐TEM) proof, as well as the theoretical and spectral proofs. Subsequently, a representative CYNO:1%Bi 3+ product is practically applied, exhibiting superior fluorescence thermometer ( S r‐max = 3.12% K −1 at 473 K), high color rendering index lighting ( R a = 91), and accurate latent fingerprint detecting performances. This work invigorates the progress of Bi 3+ ‐activated phosphors with high EQE for versatile utilizations. image