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Potential of Nano-sized Rare Earth Fluorides in Optical Applications

机译:光学应用中纳米稀土氟化物的潜力

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Rare earth fluorides are a class of materials with a high potential for optical applications. Fluoride lattices allow high coordination numbers for the hosted rare earth ions, but the high ionicity of the rare earth to fluorine bond leads to a wide band gap and very low vibrational energies. These two essential factors, in particular, contribute to their practicality for use in optical applications based on vacuum ultraviolet (VUV) and near infrared (NIR) excitation. The preparation and optical characteristics of rare earth fluoride nanoparticles and their embedding in polymeric, glassy or porous matrices are very promising for the eventual manufacture of transparent hybrid materials. Recent attempts to control the size of these particles down to the nano-scale and, at the same time, maintaining the performance of their macroscopic counterparts, indicate accessibility of hitherto unrealized optical properties and applications.
机译:稀土氟化物是一类具有很高的光学应用潜力的材料。氟化物格子允许宿主稀土离子的高协调数,但稀土对氟键的高离子性导致宽带隙和非常低的振动能量。特别是这两个基本因素有助于基于真空紫外线(VUV)和近红外(NIR)激发的光学应用的实用性。稀土氟化物纳米粒子的制备和光学特性及其在聚合物,玻璃状或多孔基质中的嵌入对于最终制造透明杂化材料非常有前途。最近的尝试将这些颗粒的大小控制到纳米级,同时保持其宏观对应物的性能,表明迄今未实现的光学性质和应用的可访问性。

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