mn doped
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2022 ◽  
Vol 243 ◽  
pp. 118657
Author(s):  
Li Yang ◽  
Hongwei Zou ◽  
Xuejiao Wang ◽  
Chuang Wang ◽  
Qiushi Wang ◽  
...  
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2022 ◽  
Vol 139 ◽  
pp. 106324
Author(s):  
Naba Khaliq ◽  
Ismat Bibi ◽  
Farzana Majid ◽  
Misbah Sultan ◽  
Mongi Amami ◽  
...  

2022 ◽  
Vol 8 ◽  
pp. 37-44
Author(s):  
Zhanwu Wang ◽  
Wenjie He ◽  
Meiling Ma ◽  
Yingrui Sui

Fuel ◽  
2022 ◽  
Vol 310 ◽  
pp. 122237
Author(s):  
Aidong Fan ◽  
Yue Jing ◽  
Jiaxiu Guo ◽  
Xueke Shi ◽  
Shandong Yuan ◽  
...  
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Nh3 Scr ◽  
Mn Doped ◽  

Fuel ◽  
2022 ◽  
Vol 309 ◽  
pp. 122108
Author(s):  
Heng Xie ◽  
Daobing Shu ◽  
Tianhu Chen ◽  
Haibo Liu ◽  
Xuehua Zou ◽  
...  

Author(s):  
Sabri Ouni ◽  
Naim Bel Haj Mohamed ◽  
Noureddine Chaaben ◽  
Adrián Bonilla-Petriciolet ◽  
Mohamed Haouari

Author(s):  
Xiaoyun Xu ◽  
Yingying Xing ◽  
Ziyue Yang

Abstract Mn activated optical materials have been demonstrated to be promising for various applications such as light-emitting device, tunable lasers and smart sensors. Most of the candidates belong to the single crystals and crystalline powders and few reports involve about the glass-derived materials. In this letter, we report the fabrication of active Mn-doped nanostructured glass sample via control of the crystallization of a typical gallogermanate glass. LiGa5O8 and LiGaGeO4 can precipitate after heat-treatment and Mn centers selectively incorporate into the crystalline phase. Importantly, the luminescence can be switched from red to green color and the intensity can be simultaneously enhanced. Furthermore, the luminescence properties can be tuned via control of the phase of the nanostructured glass. The approach should be general to various transition metal dopant, thus may potentially pave an effective way for functionalization of glass and expand the category of the active optical materials.


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