引用本文:
Haiyang Gu, Xiang Xu. Multicolor hybrid metal halides and anti-counterfeiting[J]. Chinese Journal of Structural Chemistry,
2024, 43(9): 100352.
doi:
10.1016/j.cjsc.2024.100352
Citation: Haiyang Gu, Xiang Xu. Multicolor hybrid metal halides and anti-counterfeiting[J]. Chinese Journal of Structural Chemistry, 2024, 43(9): 100352. doi: 10.1016/j.cjsc.2024.100352
Citation: Haiyang Gu, Xiang Xu. Multicolor hybrid metal halides and anti-counterfeiting[J]. Chinese Journal of Structural Chemistry, 2024, 43(9): 100352. doi: 10.1016/j.cjsc.2024.100352
Multicolor hybrid metal halides and anti-counterfeiting
摘要:
Zou and co-workers' work demonstrates that multisite fine-tuning is an effective strategy for modifying the emissions of hybrid metal halide. Through systematic chemical composition engineering, they successfully discover a unique multicolor phosphor [BPy]2CdX4:xSb3+, which achieves a wide range of tunable emissions within a single-component material. Furthermore, the characteristic of rich emission color covering a wide spectral range from blue to near-infrared identifies [BPy]2CdX4:xSb3+ as a promising luminescent material for high-security anti-counterfeiting applications. Zou and co-workers provide valuable insights into the design of new hybrid metal halide luminescent materials with tunable emissions, and their discovery is scientifically interesting.
English
Multicolor hybrid metal halides and anti-counterfeiting
Abstract:
Zou and co-workers' work demonstrates that multisite fine-tuning is an effective strategy for modifying the emissions of hybrid metal halide. Through systematic chemical composition engineering, they successfully discover a unique multicolor phosphor [BPy]2CdX4:xSb3+, which achieves a wide range of tunable emissions within a single-component material. Furthermore, the characteristic of rich emission color covering a wide spectral range from blue to near-infrared identifies [BPy]2CdX4:xSb3+ as a promising luminescent material for high-security anti-counterfeiting applications. Zou and co-workers provide valuable insights into the design of new hybrid metal halide luminescent materials with tunable emissions, and their discovery is scientifically interesting.
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