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Dive into the research topics where Guangyao Mu is active.

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Featured researches published by Guangyao Mu.


Scientific Reports | 2015

A novel violet/blue light-emitting device based on Ce2Si2O7.

Ling Li; Shenwei Wang; Guangyao Mu; Xue Yin; Kai Ou; Lixin Yi

Rare-earth silicates are highly efficient materials for silicon-based light sources. Here we report a novel light-emitting device based on Ce2Si2O7. Intense violet/blue electroluminescence was observed, with a turn-on voltage of about 13 V. The violet/blue emission is attributed to 4f–5d transitions of the Ce3+ ions in Ce2Si2O7, which are formed by interfacial reaction of CeO2 and Si. Electroluminescence and photoluminescence mechanisms of the Ce2Si2O7 light-emitting device are also discussed.


Scientific Reports | 2017

Multicolor light-emitting devices with Tb 2 O 3 on silicon

Ling Li; Shenwei Wang; Guangyao Mu; Xue Yin; Lixin Yi

Great efforts have been devoted to achieving efficient Si-based light-emitting devices. Here we report new light-emitting devices fabricated with Tb2O3 on Si substrates. Intense green electroluminescence was observed, with a turn-on voltage of about 8 V. The green emission is attributed to the characteristic transitions of Tb3+ ions in Tb2O3. The electroluminescence mechanisms of the Tb2O3 light-emitting devices are discussed. In addition, visible and near infrared electroluminescence was observed in rare-earth (Eu3+, Sm3+ and Yb3+) doped Tb2O3 light-emitting devices.


Optics Express | 2015

Intense deep-blue electroluminescence from ITO/Y 2 O 3 /Ag structure

Xue Yin; Shenwei Wang; Ling Li; Guangyao Mu; Ying Tang; Wubiao Duan; Lixin Yi

ITO/Y₂O₃/Ag devices were fabricated using Y₂O₃ films as insulator. Four intense and sharp lines with half-peak width of 4 nm were observed for the 293.78 nm InI, 316.10 nm InI, 444.82 nm InII and 403.07 nm InIII transitions. Luminescence mechanism was illustrated by cross-section of the devices based on the analysis of surface morphology. Under the action of strong electric field, the loss of K-shell electrons led to the occurrence of characteristic radiation of indium ions. In addition, the device with turn-on voltage of 10V demonstrates typical I-V diode characteristics. Moreover, Y₂O₃/In₂O₃ multiple films as the insulation layer instead of single Y₂O₃ films was found to improve the device performance with excellent CIE (x, y) coordinates (0.16, 0.03).


Physica Status Solidi B-basic Solid State Physics | 2014

Investigation on photoluminescence properties of CeO2/Sm2O3 multilayer films based on Si substrates

Ling Li; Shenwei Wang; Guangyao Mu; Xue Yin; Ying Tang; Wubiao Duan; Lixin Yi


Journal of Alloys and Compounds | 2017

Photocarrier dynamic measurement of rutile TiO2 films prepared by RF magnetron reactive sputtering

Guangmiao Wan; Shenwei Wang; Ling Li; Guangyao Mu; Xue Yin; Xinwu Zhang; Ying Tang; Lixin Yi


Vacuum | 2015

Investigation on white light emissions from CeO2/Dy2O3 multilayer films based on silicon substrates

Ling Li; Shenwei Wang; Guangyao Mu; Xue Yin; Guangmiao Wan; Xinwu Zhang; Wubiao Duan; Lixin Yi


Journal of Alloys and Compounds | 2016

Structural characteristics, luminescent properties and energy transfer processes of CeO2:Er3+ thin films

Guangyao Mu; Shenwei Wang; Ling Li; Xue Yin; Guangmiao Wan; Ying Tang; Lixin Yi


Journal of Physics D | 2017

Observation of red electroluminescence from an Eu2O3/p+-Si device and improved performance by introducing a Tb2O3 layer

Xue Yin; Shenwei Wang; Guangyao Mu; Guangmiao Wan; Miaoling Huang; Lixin Yi


Applied Physics A | 2016

Near-infrared emissions from Yb3+-doped CeO2 and Ce2Si2O7 films based on silicon substrates subjected to thermal treatment

Guangyao Mu; Shenwei Wang; Ling Li; Xue Yin; Miaoling Huang; Lixin Yi


Journal of Physics D | 2017

Effect of In3+doping on electroluminescence from MgZnO:In3+/ZnO:Er3+/n-Si LEDs

Miaoling Huang; Shenwei Wang; Xue Yin; Guangyao Mu; Guangmiao Wan; Xiaoxia Duan; Lixin Yi

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Shenwei Wang

Beijing Jiaotong University

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Xue Yin

Beijing Jiaotong University

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Ling Li

Beijing Jiaotong University

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Lixin Yi

Beijing Jiaotong University

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Guangmiao Wan

Beijing Jiaotong University

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Miaoling Huang

Beijing Jiaotong University

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Wubiao Duan

Beijing Jiaotong University

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Ying Tang

Beijing Jiaotong University

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Xinwu Zhang

Beijing Jiaotong University

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Kai Ou

Beijing Jiaotong University

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