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Development of SiAION: From Mechanical to Optical Applications

机译:SiAION的发展:从机械到光学应用

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Various rare-earth-doped α-SiA;ON powders with high purity were prepared to study mechanical and optical properties of SiAlON-based functional materials in connection with ionic radius and electronic structure of rare-earth elements. Single phase rare-earth-doped α-SiAlON powders were obtained at a temperature as low as 1873 K by heating powder mixtures of rare-earth oxide, AlN and highly active ultrafine amorphous Si_3N_4. Bending strength of highly dense rare-earth-doped α/β-SiA10N-based ceramics was increased with decreasing radii of rare-earth ions, i.e., Yb-SiAlON-based ceramics exhibited excellent high-temperature strength and oxidation resistance caused by the small ionic radius of ytterbium. As for optical application, α-SiAlON is an excellent host lattice with good thermal and chemical stability for doping rare-earth element which activates photoluminescence. Europium-doped Ca-α-SiAlON phosphor formulated as Ca_xEu_y(Si,Al)_(12)(O,N)_(16) (where 0
机译:制备了各种高纯度的稀土掺杂α-SiA; ON粉末,以研究基于SiAlON的功能材料的机械和光学性能,以及稀土元素的离子半径和电子结构。通过加热稀土氧化物,AlN和高活性超细非晶Si_3N_4的粉末混合物,可在低至1873 K的温度下获得单相稀土掺杂的α-SiAlON粉末。高密度稀土掺杂的α/β-SiA10N基陶瓷的弯曲强度随着稀土离子半径的减小而增加,即,Yb-SiAlON基陶瓷表现出优异的高温强度和由小尺寸引起的抗氧化性的离子半径。对于光学应用,α-SiAlON是一种出色的主体晶格,具有良好的热稳定性和化学稳定性,可用于掺杂稀土元素,从而激活光致发光。制备制成Ca_xEu_y(Si,Al)_(12)(O,N)_(16)(其中0

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