发光
拉曼光谱
离子
荧光粉
材料科学
光致发光
光谱学
八面体
发光二极管
光电子学
激发
晶体结构
金刚石顶砧
晶场理论
Crystal(编程语言)
发射光谱
分析化学(期刊)
化学物理
蓝移
衍射
格子(音乐)
固溶体
原子电子跃迁
单晶
光化学
红外线的
作者
Mikołaj Kamiński,Yi‐Ting Tsai,Yen-Ling Kuo,Alfonso Muñoz,Ulises R. Rodríguez Mendoza,Mu‐Huai Fang,Sebastian Mahlik
标识
DOI:10.1021/acs.chemmater.5c02959
摘要
We present a comprehensive study of near-infrared II (NIR-II) luminescence from Ni2+ ions in Li(Ga1–xAlx)5O8 spinels, emphasizing how chemical and mechanical pressure act as complementary tools to tune the electronic structure and optical response. By isolating Ni2+ emission and excluding codopants such as Cr3+, we probe the intrinsic optical behavior of the system through temperature- and pressure-dependent spectroscopy. Substitution of Ga3+ with smaller Al3+ ions (chemical pressure) and high-pressure experiments using a diamond anvil cell (mechanical pressure) both strengthen the crystal field, resulting in a characteristic blueshift of the Ni2+ emission. Structural analysis by XRD and Raman spectroscopy confirms the formation of solid solutions and lattice contraction with increasing Al content. Spectroscopic data indicate that Ni2+ occupies octahedral sites, with emission governed by 3T2 → 3A2 transitions. The evolution of Racah and crystal field parameters enables the construction of energy level diagrams, refined beyond conventional Tanabe–Sugano predictions by incorporating pressure-induced changes. Finally, we demonstrate the potential application of Ni2+-based phosphors in SWIR imaging, utilizing red LED excitation to detect pest infections in basil leaves. This dual-pressure approach establishes Li(Ga1–xAlx)5O8 as a model system for understanding pressure–structure–luminescence relationships and for developing tunable NIR phosphors for practical imaging technologies.
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