Luminescence properties of BaMgAl10O17 : Mn2+ nanophosphors

被引:14
|
作者
Kumar, Manvendra [1 ]
Rajput, Parasmani [2 ]
Singh, Prashant K. [3 ]
Yadav, A. C. [4 ,6 ]
Pradhan, S. L. [4 ]
Baranwal, Vikas [4 ]
Singh, Udai B. [5 ,7 ]
Jha, S. N. [2 ]
Singh, Fouran [5 ]
机构
[1] Shri Vaishnav Vidyapeeth Viswavidyalaya, Dept Phys, Inst Sci, Indore 452002, Madhya Pradesh, India
[2] Bhabha Atom Res Ctr, Atom & Mol Phys Div, Mumbai 400085, Maharashtra, India
[3] Nehru Gram Bharati Univ, Kotwa Jamunipur 221505, Prayagraj, India
[4] Univ Allahabad, Nanotechnol Applicat Ctr, Prayagraj 211002, India
[5] Inter Univ Accelerator Ctr, Aruna Asaf Ali Rd,PB10502, New Delhi 110067, India
[6] KN Govt PG Coll, Gyanpur Srn 221304, Bhadohi, India
[7] Deen Dayal Upadhyaya Gorakhpur Univ, Dept Phys, Gorakhpur 273009, Uttar Pradesh, India
关键词
lonoluminescence; BAM; SHI irradiation; Doping; SOLUTION COMBUSTION METHOD; MICROWAVE-ABSORPTION PROPERTIES; PHOTOLUMINESCENCE PROPERTIES; PHOSPHORS; DAMAGE;
D O I
10.1016/j.jallcom.2019.05.332
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In the present work, ionoluminescence (IL) properties of chemically synthesized Mn2+ activated BaMgAl10O17 (BAM) nanophosphors using swift heavy ions (120 MeV Ag9+) is reported under different ion fluence. X-ray diffraction was performed to reveal the structural information of the prepared materials. The oxidation state of the doped Mn ions in BAM was elucidated by X-ray absorption near edge measurements of Mn Kedge and results show that the Mn ions are in divalent state. Initially, the prepared nanophosphors were subjected to photoluminescence (PL) measurement for different doping concentration. Finally, the pellets of the nanophosphors were subjected to IL measurement at room temperature and at a low temperature about 77 K. The PL/IL spectra show a broad band ranging from 470 nm to 610 nm with centered at 521 nm which is attributed to the luminescence centers activated by Mn2+ ions corresponding to T-4(1)->(6)A(1) transition, responsible for green emission. The PL/IL intensity increases with increase in the doping percentage of Mn ions up to 5% followed by concentration quenching of the luminescence. On the other hand, IL intensity decreases exponentially with increasing ion fluence for all the doping percentage and saturates at higher fluence. It is also observed that the rate of reduction in in the IL is more pronounced at low temperature. (C) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:556 / 562
页数:7
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