Structural and optical properties of Ce-stabilized tetragonal phase and intense blue emission of monoclinic phase in ZrO2 nanoparticles

被引:7
作者
Jithin, P. V. [1 ]
Dhamodaran, Aswathi [1 ]
Prajisha, K. P. [2 ]
Suman, Shradha [2 ,3 ]
Sankaran, K. J. [2 ,3 ]
Ramesh, Ade [4 ]
Sudheendran, K. [5 ]
Kurian, Joji [1 ]
机构
[1] Nirmalagiri Coll, Dept Phys, Kannur 670701, Kerala, India
[2] CSIR Inst Minerals & Mat Technol, Bhubaneswar 751013, Odisha, India
[3] Acad Sci & Innovat Res AcSIR, Ghaziabad 201002, India
[4] Koneru Lakshmaiah Educ Fdn, Dept Phys, Aziz Nagar PO, Hyderabad 500075, India
[5] Sree Kerala Varma Coll, Dept Phys, Trichur 680011, Kerala, India
关键词
Crystal structure; phase transformation; Oxygen vacancy; Emission spectrum; SOL-GEL SYNTHESIS; DOPED ZRO2; ELECTROCHEMICAL DETECTION; SPECTROSCOPIC PROPERTIES; PHOTOCATALYTIC ACTIVITY; ZIRCONIA; NI; MICROSPHERES; NANOPOWDERS;
D O I
10.1016/j.jlumin.2024.120933
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Structural and optical properties of Ce-stabilized tetragonal zirconium dioxide (ZrO2) and intense blue emission of monoclinic ZrO2 are presented in this paper. Nanoparticles of ZrO2 in the stabilized tetragonal and monoclinic phases have been prepared by the solution combustion method. X-ray diffraction studies and Rietveld refinement of the diffraction pattern show the stabilization of ZrO2 in the tetragonal phase (t-ZrO2) with Ce doping. It is the host-dopant ionic size mismatch that leads to lattice distortion and hence the t-ZrO2 stabilized phase. Raman modes confirm the phase transformation from the monoclinic to a tetragonal phase of ZrO2. The presence of oxygen vacancies and surface states in the samples play a role in altering the optical band gap. The dopant Ceions create defects/oxygen vacancies, which act as the trapping sites for electrons and holes/the donor and vacancy-related impurity levels. It is transition between these levels or between delocalized conduction bands that lead to band gap reduction. Photoluminescence studies reveal the presence of structural phase transformation dependent emission bands. The monoclinic phase (m-ZrO2) exhibits an intense blue emission originating from the asymmetric and unusual oxygen coordination of Zr in the m-ZrO2. The chromaticity coordinates indicate that the prepared material and adopted strategies are suitable in the field of optoelectronic application.
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页数:12
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