首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Oxyfluoride Glass-Ceramics for Transition Metal Ion Based Photonics: Broadband Near-IR Luminescence of Nickel Ion Dopant and Nanocrystallization Mechanism
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Oxyfluoride Glass-Ceramics for Transition Metal Ion Based Photonics: Broadband Near-IR Luminescence of Nickel Ion Dopant and Nanocrystallization Mechanism

机译:过渡金属离子基光子学的氟氧化物玻璃陶瓷:镍离子掺杂剂的宽带近红外发光及其纳米晶化机理

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摘要

Nickel ion doped transparent bulk glass-ceramics containing K2SiF6, ZnF2, and KZnF3 nanocrystals were elaborated to show the prospect that this novel group of oxyfluoride glass-ceramics is promising for transition metal ion based photonics. These new oxyfluoride glass-ceramics exhibit a new broadband luminescence of Ni2+ ions in the intriguing near-IR spectral region ranging from 1200 to 2400 nm. Ni2+ ions are incorporated into the precipitated K2SiF6, ZnF2, and KZnF3 crystals, which provide octahedral sites for Ni2+ and make it optically active. Taking into account the microstructure of phase separation observed by replica TEM, a detailed mechanism of phase separation-assisted nanocrystallization was described for these oxyfluoride glasses. These results allow one to establish a full physical model of the nanocrystallization mechanism For the precipitation of fluoride crystallites, not only can the nanometric size be explained but also the formation of different crystal phases can be controlled by the initial amorphous phase separation of droplet or interpenetrating structure with a sufficiently elaborated glass design.
机译:精心制作了包含K2SiF6,ZnF2和KZnF3纳米晶体的镍离子掺杂透明块状玻璃陶瓷,以显示这种新型的氟氧化物玻璃陶瓷有望用于基于过渡金属离子的光子学。这些新型的氟氧化物玻璃陶瓷在1200至2400 nm的引人入胜的近红外光谱区域中展现了新的Ni2 +离子宽带发光。 Ni2 +离子被掺入沉淀的K2SiF6,ZnF2和KZnF3晶体中,这些晶体为Ni2 +提供八面体位点并使其具有光学活性。考虑到通过复制TEM观察到的相分离的微观结构,描述了这些氧氟化物玻璃的相分离辅助纳米晶化的详细机理。这些结果使人们可以建立一个完整的纳米结晶机理物理模型。对于氟化物微晶的沉淀,不仅可以解释纳米尺寸,而且可以通过液滴的初始无定形相分离或互穿来控制不同晶相的形成。充分精心设计的玻璃结构。

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