The structure of the Si3Ox (x =2, 3) cluster is investigated; we find that the geometry of Si3O2 is similar to that of Si3O3 except for the oxygen-deficient defect structure (Si-Si band) which exists only in the S...The structure of the Si3Ox (x =2, 3) cluster is investigated; we find that the geometry of Si3O2 is similar to that of Si3O3 except for the oxygen-deficient defect structure (Si-Si band) which exists only in the Si3O2 cluster. It is known that oxygen-deficient defects are used to explain visible luminescence (especially blue, purple and ultraviolet light) from silicon-based materials, which are directly bound up with the excited states of the molecules. Therefore the excitation properties of the two clusters are also studied. Our results show that the absorption spectrum of Si3O2 is concentrated in the visible light region. In contrast, the absorption spectrum of Si3O3 is mainly located in the ultraviolet light region. The calculations are perfectly consistent with experimental data and also support the theory of oxygen-deficient defects.展开更多
Mo5Si3-20%Al2O3 (mass fraction) nanocomposite was synthesized by mechanical alloying (MA) of mixture of MoO3,Mo,Si and Al powders.The structural evolutions of powder particles during mechanical alloying were studi...Mo5Si3-20%Al2O3 (mass fraction) nanocomposite was synthesized by mechanical alloying (MA) of mixture of MoO3,Mo,Si and Al powders.The structural evolutions of powder particles during mechanical alloying were studied by X-ray diffractometry (XRD),scanning electron microscopy (SEM),transmission electron microscopy (TEM) and differential thermal analysis (DTA).Results show that Mo5Si3-20%Al2O3 was obtained after 10 h of milling.The spontaneous reaction of powders takes place in an explosive mode.The crystallite sizes of Mo5Si3 and Al2O3 after milling for 30 h were 36.3 nm and 21.9 nm,respectively.With longer milling time,the intensities of Mo5Si3 and Al2O3 peaks decreased and became broad due to the decrease in crystallite size.Thermal analysis results and XRD analysis results show that the Mo5Si3-Al2O3 nanocomposite powders are very stable during milling (up to 30 h) and heating (up to 1 000℃) and no transformation takes place.展开更多
采用高温固相法合成Ca取代Sr3Al0.6Si0.4O4.4F0.6∶Ce3+中Sr的Sr3-x Ca x Al0.6Si0.4O4.4F0.6∶Ce3+荧光粉。由于Sr3Al0.6Si0.4O4.4F0.6∶Ce3+中Sr具有十配位Sr(1)和八配位Sr(2),所以激活剂离子Ce3+也具有两个不同的占位。结合Ce3+的光...采用高温固相法合成Ca取代Sr3Al0.6Si0.4O4.4F0.6∶Ce3+中Sr的Sr3-x Ca x Al0.6Si0.4O4.4F0.6∶Ce3+荧光粉。由于Sr3Al0.6Si0.4O4.4F0.6∶Ce3+中Sr具有十配位Sr(1)和八配位Sr(2),所以激活剂离子Ce3+也具有两个不同的占位。结合Ce3+的光谱结果和Van Uitert经验公式,分别研究了十配位Ce(1)3+和八配位Ce(2)3+的猝灭浓度和荧光寿命,指出是由于Ca的掺入减小了Ce(1)3+发光中心,增加了Ce(2)3+发光中心,从而出现随着Ca/Sr比增加,样品在400 nm激发下发光强度减小,而在460 nm激发下发光强度增大的现象。同时,Ca的掺入增强了粉体发光的热稳定性。调节Ca含量可以使粉体实现从绿黄色到黄色的发光,表明Sr3-x Ca x Al0.6Si0.4-O4.4F0.6∶Ce3+荧光粉是一款潜在的适合近紫外和蓝光激发的白光LED用荧光粉。展开更多
基金supported by the Natural Science Foundation of Henan Province of China (Grant No. 092300410249)the Natural Science Foundation of the Education Bureau of Henan Province of China (Grant No. 2010A140008)the Foundation for University Young Core Instructors of Henan Province, China (Grant No. 2009GGJS-044)
文摘The structure of the Si3Ox (x =2, 3) cluster is investigated; we find that the geometry of Si3O2 is similar to that of Si3O3 except for the oxygen-deficient defect structure (Si-Si band) which exists only in the Si3O2 cluster. It is known that oxygen-deficient defects are used to explain visible luminescence (especially blue, purple and ultraviolet light) from silicon-based materials, which are directly bound up with the excited states of the molecules. Therefore the excitation properties of the two clusters are also studied. Our results show that the absorption spectrum of Si3O2 is concentrated in the visible light region. In contrast, the absorption spectrum of Si3O3 is mainly located in the ultraviolet light region. The calculations are perfectly consistent with experimental data and also support the theory of oxygen-deficient defects.
基金Project(3ZS061-A25-038) supported by the Natural Science Foundation of Gansu Province,China
文摘Mo5Si3-20%Al2O3 (mass fraction) nanocomposite was synthesized by mechanical alloying (MA) of mixture of MoO3,Mo,Si and Al powders.The structural evolutions of powder particles during mechanical alloying were studied by X-ray diffractometry (XRD),scanning electron microscopy (SEM),transmission electron microscopy (TEM) and differential thermal analysis (DTA).Results show that Mo5Si3-20%Al2O3 was obtained after 10 h of milling.The spontaneous reaction of powders takes place in an explosive mode.The crystallite sizes of Mo5Si3 and Al2O3 after milling for 30 h were 36.3 nm and 21.9 nm,respectively.With longer milling time,the intensities of Mo5Si3 and Al2O3 peaks decreased and became broad due to the decrease in crystallite size.Thermal analysis results and XRD analysis results show that the Mo5Si3-Al2O3 nanocomposite powders are very stable during milling (up to 30 h) and heating (up to 1 000℃) and no transformation takes place.
文摘采用高温固相法合成Ca取代Sr3Al0.6Si0.4O4.4F0.6∶Ce3+中Sr的Sr3-x Ca x Al0.6Si0.4O4.4F0.6∶Ce3+荧光粉。由于Sr3Al0.6Si0.4O4.4F0.6∶Ce3+中Sr具有十配位Sr(1)和八配位Sr(2),所以激活剂离子Ce3+也具有两个不同的占位。结合Ce3+的光谱结果和Van Uitert经验公式,分别研究了十配位Ce(1)3+和八配位Ce(2)3+的猝灭浓度和荧光寿命,指出是由于Ca的掺入减小了Ce(1)3+发光中心,增加了Ce(2)3+发光中心,从而出现随着Ca/Sr比增加,样品在400 nm激发下发光强度减小,而在460 nm激发下发光强度增大的现象。同时,Ca的掺入增强了粉体发光的热稳定性。调节Ca含量可以使粉体实现从绿黄色到黄色的发光,表明Sr3-x Ca x Al0.6Si0.4-O4.4F0.6∶Ce3+荧光粉是一款潜在的适合近紫外和蓝光激发的白光LED用荧光粉。