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Structure, Raman and luminescence characteristics of Zn1-xHfxO (0 <= x <= 0.1) nanocrystals prepared via N-(methyl)mercaptoacetamide assisted microwave approach

机译:通过N-(甲基)巯基丙基丙酰胺辅助微波法制备的Zn1-XHFxO(0 <= <= 0.1)纳米晶体的结构,拉曼和发光特性

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A series of Zn1-xHfxO (0 <= x <= 0.1) nanocrystals was synthesized via the N-(methyl)mercaptoacetamide assisted microwave approach. The influence of the Hf dopant on the crystal structure, Raman lattice vibrations, and luminescent emission spectra was studied. XRD measurements revealed that the inclusion of the Hf dopant in the Zn cites instigated the expansion of the ZnO lattice while preserving its hexagonal structure. The XRD, SEM and DLS measurements demonstrated that the Hf dopant increased the size of ZnO nanocrystals from 2.5 +/- 0.1 nm to 11.5 +/- 0.1 nm. The EDS spectra confirmed the stoichiometry of the prepared samples. The zeta potential measurement revealed that the Hf dopant is incorporated within the ZnO nanostructure. The Raman spectra showed that the Hf dopant was efficiently incorporated into the ZnO crystals without altering its internal structure. The UV-vis. spectroscopy indicated that the partial substitution of Zn atoms by Hf atoms leads to modulation of the optical bandgap. Luminescence measurements revealed that the inclusion of the Hf dopant in the Zn cites resulted in suppression of the ZnO crystal defects. The XPS measurements confirmed that the inclusion of Hf dopant in the Zn cites resulted in a reduction of the amount of oxygen vacancy which actes as a trap centers for the photogenerated electrons. Therefore, a modulation of the visible spectra occurred, while the Hf dopant did not affect the intensity of UV-emission band of ZnO nanocrystals. Therefore, the Zn1-xHfxO (0 <= x <= 0.1) nanocrystals are favorable as potential candidates for both catalytic and luminescent device applications.
机译:通过N-(甲基)巯基丙酰胺辅助微波方法合成了一系列Zn1-XHFXO(0 <= <= 0.1)纳米晶体。研究了HF掺杂剂对晶体结构,拉曼晶格振动和发光发光光谱的影响。 XRD测量显示,在Zn CITES中包含HF掺杂剂在保持其六边形结构的同时施加ZnO格子的膨胀。 XRD,SEM和DLS测量表明,HF掺杂剂从2.5 +/- 0.1nm到11.5 +/- 0.1nm的ZnO纳米晶体的尺寸增加。 EDS光谱证实了制备样品的化学计量。 Zeta电位测量表明,HF掺杂剂掺入ZnO纳米结构内。拉曼光谱显示HF掺杂剂有效地掺入ZnO晶体中而不改变其内部结构。 uv-vis。光谱学表明,通过HF原子部分取代Zn原子导致光学带隙的调制。发光测量显示,在Zn Cites中包含HF掺杂剂导致抑制ZnO晶体缺陷。 XPS测量证实,包含HF掺杂剂在Zn Cites中导致氧空位量的减少,其作用作为光生电子的捕集中心。因此,发生了可见光谱的调节,而HF掺杂剂不影响ZnO纳米晶体的紫外线发射带的强度。因此,Zn1-XHFXO(0 <= X <= 0.1)纳米晶体是催化和发光装置应用的潜在候选者。

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