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Enhance the luminescence properties of Ca14Al10Zn6O35:Ti4+ phosphor via cation vacancies engineering of Ca2+ and Zn2+

机译:通过Ca2 +和Zn2 +通过阳离子障碍工程增强Ca14Al10Zn6O35:Ti4 +荧光体的发光性质

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摘要

Ti4+-activated zinc calcium aluminate phosphors, owing to their excellent luminescence properties, nontoxicity, environment friendliness and low price, have a certain prospect in the field of plant cultivation. In this study, we have successfully synthesized a series of Ca14-yAl10-xZn6-zO35:xTi(4+) (CAZO:Ti4+) phosphors through a high-temperature solid-state method. Furthermore, the emission spectrum of CAZO:Ti4+ located in bluish violet-emitting band, and has an emission peak at 378 nm upon the excitation of 268 nm due to the charge transfer of Ti4+-O2-. Moreover, the luminescence intensity of as-synthetized phosphors can be improved by cation vacancies engineering to compensate for charge unbalance. Especially, the luminescence intensity could be further improved when the Ca2+ vacancy is 0.35 mol or the Zn2+ vacancy is 0.275 mol. Furthermore, the X-ray powder diffraction (XRD) analysis and crystal structure are checked and confirmed that the synthesized material is pure phase. The concentration quenching mechanism, FT-IR spectra, UV-vis absorption properties, lifetimes and electron transition process of Ca14-yAl10-xZn6-zO35:xTi(4+) were discussed in detail. From the above, the phosphor has a potential application for plant growth field due to its broad bluish violet emission.
机译:TI4 +活化锌铝酸钙磷光体,由于其优异的发光性质,无毒性,环境友好和低价格,在植物栽培领域具有一定的前景。在本研究中,我们通过高温固态方法成功地合成了一系列CA14-YAL10-XZN6-ZO35:XTI(4+)(Cazo:Ti4 +)磷光体。此外,位于蓝色紫色发射带中的Cazo:Ti4 +的发射光谱,并且由于Ti4 + -O2-电荷转移,在268nm的激发时具有378nm的发射峰。此外,通过阳离子空位工程可以改善优质磷光体的发光强度,以补偿电荷不平衡。特别是当Ca2 +空位为0.35mol或Zn2 +空位时,可以进一步改善发光强度,或者Zn2 +空位为0.275摩尔。此外,检查并确认合成材料是纯相的X射线粉末衍射(XRD)分析和晶体结构。详细讨论了Ca14-yal10-XZN6-ZO35:Ca14-yal10-XZN6-ZO35:XTI(4 +)的浓度猝灭机理,FT-IR光谱,UV-Vis吸收性能,寿命和电子过渡过程。从以上,磷光体由于其宽蓝蓝的紫色排放而具有植物生长领域的潜在应用。

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