Pandozzi Fabiano, Vetrone Fiorenzo, Boyer John-Christopher, Naccache Rafik, Capobianco John A, Speghini Adolfo, Bettinelli Marco
Department of Chemistry and Biochemistry, Concordia University, 7141 Sherbrooke Street West, Montreal, QC, H4B 1R6, Canada.
J Phys Chem B. 2005 Sep 22;109(37):17400-5. doi: 10.1021/jp052192w.
The spectroscopic behavior of gadolinium gallium garnet (Gd3Ga5O12, GGG) nanocrystals codoped with 1% each of Tm3+ and Yb3+ prepared via a solution combustion synthesis procedure was investigated. Initial excitation of the codoped nanocrystals with 465.8 nm (into the 1G4 state) showed a dominant blue-green emission ascribed to the 1G4-3H6 transition as well as red and NIR emissions from the 1G4-3F4 and 1G4-3H5/3H4-3H6 transitions, respectively. Excitation at this wavelength (465.8 nm) showed the existence of a Tm3+ --> Yb3+ energy transfer process evidenced by the presence of the 2F5/2-2F7/2 Yb3+ emission in the NIR emission spectrum. The decay time constants proved that the transfer of energy occurred via the 3H4 state. Following excitation of the Yb3+ ion with 980 nm, intense upconverted emission was observed. Emissions in the UV (1D2-3H6), blue (1D2-3F4), blue-green (1G4-3H6), red (1G4-3F4), and NIR (1G4-3H5/3H4-3H6) were observed and were the direct result of subsequent transfers of energy from the Yb3+ ion to the Tm3+ ion. Power dependence studies showed a deviation from expected values for the number of photons involved in the upconversion thus indicating a saturation of the upconversion process. An energy transfer efficiency of 0.576 was determined experimentally.
研究了通过溶液燃烧合成法制备的共掺杂1% Tm³⁺和1% Yb³⁺的钆镓石榴石(Gd₃Ga₅O₁₂,GGG)纳米晶体的光谱行为。用465.8 nm(进入¹G₄态)对共掺杂纳米晶体进行初始激发,显示出主要的蓝绿色发射,归因于¹G₄-³H₆跃迁,以及分别来自¹G₄-³F₄和¹G₄-³H₅/³H₄-³H₆跃迁的红色和近红外发射。在该波长(465.8 nm)激发下,显示存在Tm³⁺→Yb³⁺能量转移过程,这由近红外发射光谱中²F₅/₂-²F₇/₂ Yb³⁺发射的存在所证明。衰减时间常数证明能量转移是通过³H₄态发生的。用980 nm激发Yb³⁺离子后,观察到强烈的上转换发射。观察到紫外(¹D₂-³H₆)、蓝色(¹D₂-³F₄)、蓝绿色(¹G₄-³H₆)、红色(¹G₄-³F₄)和近红外(¹G₄-³H₅/³H₄-³H₆)发射这些是能量随后从Yb³⁺离子转移到Tm³⁺离子的直接结果。功率依赖性研究表明,上转换中涉及的光子数偏离预期值,从而表明上转换过程饱和。实验确定的能量转移效率为0.576。