4.6 Article

Enhanced red emission in CaMoO4:Bi3+,Eu3+

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JOURNAL OF PHYSICAL CHEMISTRY C
卷 111, 期 35, 页码 13256-13260

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AMER CHEMICAL SOC
DOI: 10.1021/jp073991c

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We report the observation of enhanced red emission at 613 nm originating from D-5(0) -> F-7(2) transition of EU3+-doped CaMoO4 with Bill as an additive, under excitation either into the L-5(6) state with 395 nm or the 5 D-2 state with 465 urn. The luminescence properties as a function of Bi3+ and Eu3+ concentrations are studied. Strongly enhanced red emission of Eu3+ is obtained by adding Bi3+ instead of increasing the Eu3+ concentration. For a fixed Eu3+ concentration, there is an optimal B i(3+) concentration, at which the maximum luminescence intensity is achieved. The red emission of CaMoO4:0.05Eu(3+) is enhanced by a factor of 3 as 0.2 Bi3+ is co-doped into the system, stronger than that of commercial Y2O2S:Eu3+ and Y203:Eu3+ phosphors. Lifetime and diffuse reflection spectra measurements indicate that the red emission enhancement is due to the enhanced transition probabilities from the ground state to L-5(6) and D-5(2) states of Eu3+ in the distorted crystal field in which it is considered that more odd-rank crystal field components are induced by crystal structural distortion and symmetry decreasing with the addition of Bi3+, leading to more opposite parity components, for example, 4-15d states, mixed into the 46 transitional levels of Eu3+. The energy transfer from Bi3+ to Eu3+ also occurs and is discussed. The present material is a promising red-emitting phosphor for white light diodes with nearUV/blue GaN-based chips.

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