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首页> 外文期刊>RSC Advances >Structural phase transition and photoluminescence properties of wurtzite CdS:Eu3+ nanoparticles under high pressure
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Structural phase transition and photoluminescence properties of wurtzite CdS:Eu3+ nanoparticles under high pressure

机译:纤锌矿CdS:Eu 3 + 纳米粒子在高压下的结构相变和光致发光性质

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摘要

High-pressure behaviors of wurtzite CdS and CdS:Eu3+ nanoparticles (8–10 nm) were investigated by synchrotron radiation X-ray diffraction, Raman spectroscopy, and photoluminescence under high pressure at ambient temperature. The doping of Eu ions increases the phase transition pressure from wurtzite structure to rocksalt structure (CdS = 4.76 GPa and CdS:Eu = 5.22 GPa) and so does the bulk modulus (B0) of the initial and high pressure phases. This phenomenon can be attributed to the great impact on tensile strain along the c-axis of CdS nanoparticles, which is identified by the relationship of lattice contraction and the pressure obtained from Raman 1LO. The phase transitions of all samples are partly reversible. The Eu3+ ions luminescence from 5D07FJ (J = 1, 2) transition in CdS:Eu nanoparticles emerges obviously and changes during the phase transformation, which indicate the variation of the local symmetry of the Eu3+ ions. The new peak of 5D07F3 emerges at 7.26 GPa, persisting until the end of the whole experiment. The obtained CdS nanoparticles will hold promising potential in the fabrication of effective biological sensors and photodetectors for practical application under high pressure.
机译:通过同步辐射X射线衍射,拉曼光谱和光致发光研究了纤锌矿CdS和CdS:Eu 3 + 纳米颗粒(8-10 nm)的高压行为。在环境温度下为高压。 Eu离子的掺杂会增加从纤锌矿结构到岩盐结构的相变压力(CdS = 4.76 GPa和CdS:Eu = 5.22 GPa),体积模量( B 0 )的初始阶段和高压阶段。这种现象可以归因于CdS纳米颗粒沿 c 轴对拉伸应变的巨大影响,这可以通过晶格收缩与拉曼1LO的压力关系来确定。所有样品的相变都是部分可逆的。 Eu 3 + 离子从 5 D 0 发光small>→ 7 F J J = 1,2)过渡CdS:Eu纳米粒子在相变过程中明显出现并发生变化,表明Eu 3 + 离子的局部对称性发生了变化。 5 D 0 7 F 3 出现在7.26 GPa,一直持续到整个实验结束。所获得的CdS纳米粒子在制造有效的高压生物传感器和光电探测器方面具有广阔的发展前景。

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