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首页> 外文期刊>CERAMICS INTERNATIONAL >A comparative study on the influence of monovalent, divalent and trivalent doping on the structural, optical and photoluminescence properties of Zn0.96T0.04O (T: Li+, Ca2+& Gd3+) nanoparticles
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A comparative study on the influence of monovalent, divalent and trivalent doping on the structural, optical and photoluminescence properties of Zn0.96T0.04O (T: Li+, Ca2+& Gd3+) nanoparticles

机译:单价,二价和三价掺杂对Zn0.96T0.04O(T:Li +,Ca2 +和Gd3 +)纳米颗粒结构,光学和光致发光性能影响的对比研究

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摘要

Nanoparticles of pure ZnO and monovalent, divalent & trivalent doped Zn0.96T0.04O (T: Li+, Ca2+& Gd3+) were prepared by the nitrate-citrate based sol-gel method. Powder XRD, TEM and photoluminescence data analysis confirmed single phase formation of pure ZnO, Zn0.96Li0.04O, Zn0.96Ca0.04O and Zn0.96Gd0.04O nanocrystals in the wurtzite type hexagonal lattice with surface and intrinsic crystal defects. UV-Vis-NIR optical absorption measurement demonstrated significant optical light absorption in the visible and UV bands for all the samples. A photo absorption peak below 380 nm is observed in all the four samples. The band gap energies were estimated to be 3.03eV, 2.78eV, 2.90eV and 2.79eV for ZnO, Zn0.96Li0.04O, Zn0.96Ca0.04O and Zn0.96Gd0.04O respectively. Monovalent and trivalent doping in ZnO induces reduction in the band gap energy and increment in the refractive index. 325 nm excited photoluminescence spectrums of pure and doped ZnO samples displayed a peak in the UV region and a broad peak in the visible band. Ca, Li and Gd doping in ZnO leads to red shifting of the UV emission band by substantial decrement in the band-gaps. Deconvoluted PL data analysis attests presence of various types of defects in the ZnO lattice which leads to strong electronic emission in the visible band. Computed values of CCT were found to be below 4000 K in these nanocrystalline samples, which makes them suitable material for the household optoelectronic devices. This study suggests that monovalent (Li+) doping in ZnO is better choice for tuning the optical and photoluminescence properties for their possible utilization in light harvesting and energy conversion applications.
机译:通过基于硝酸柠檬酸盐的溶胶 - 凝胶法制料制备纯ZnO和一价掺杂Zn0.96T0.04O(T:Li +,Ca2 +和Gd3 +的纯ZnO和单价,二价和三价掺杂氮。粉末XRD,TEM和光致发光数据分析证实了纯ZnO,Zn0.96LI0.04O,Zn0.96Ca0.04O和Zn0.96GD0.04O纳米纳米纳米晶体中的紫立岩型六边形晶格,具有表面和内在晶体缺陷。 UV-Vis-Nir光学吸收测量在所有样品中显示出可见光和UV带中的显着光学光学光学光学光学光吸收。在所有四个样品中观察到低于380nm的照片吸收峰。 ZnO,Zn0.96Li0.04O,Zn0.96CA0.04O和ZN0.96GD0.04O分别估计带隙能量为3.03EV,2.78EV,2.90EV和2.79EV。在ZnO中的单价和三价掺杂诱导带隙能量和折射率的增量降低。纯和掺杂ZnO样品的325nm激发光致发光光谱在UV区域中显示出峰值和可见带中的宽峰。在ZnO中掺杂Ca,Li和Gd掺杂导致UV发射带的红色移位通过在带间隙中的大量递减。 Deconvolututed PL数据分析证明了ZnO格子中各种类型的缺陷,这导致可见带中的强电子发射。在这些纳米晶样品中发现CCT的计算值低于4000k,这使得它们适用于家用光电器件。本研究表明,在ZnO中掺杂的单价(Li +)是调整光学和光致发光性能的更好选择,以便在光收集和能量转换应用中进行可能利用。

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