中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Laser-quality Tm:(Lu0.8Sc0.2)2O3 mixed sesquioxide ceramics shaped by gelcasting of well-dispersed nanopowders

文献类型:期刊论文

作者H.Wu; G.-H.Pan; Z.Hao; L.Zhang; X.Zhang; L.Zhang; H.Zhao
刊名Journal of the American Ceramic Society
出版日期2019
卷号102期号:8页码:4919-4928
ISSN号00027820
关键词Pumping (laser),Ceramic materials,Continuous wave lasers,Nanostructured materials
DOI10.1111/jace.16325
英文摘要Tm3+-doped mixed sesquioxide transparent ceramics are attractive candidates for the generation of robust ~2.1m lasers. In this paper, laser-quality Tm:(Lu0.8Sc0.2)2O3 mixed sesquioxide ceramics were shaped for the first time by gelcasting of well-dispersed nanopowders, which were obtained using a modified coprecipitation method. The dispersibility of starting nanopowders was largely improved using alcohol-water solvent. The rheological properties of slurries were optimized for gelcasting. We also investigated the densification behavior of the gel-casted green compacts. In contrast to the dry-pressing route, it was found that gelcasting could yield more homogeneous and transparent ceramics. The optical in-line transmittance of the ceramic rod 12mm in length was as high as 80.3% at 2090nm. Upon pumping the ceramic rod by 796nm diode laser, a 1.88W CW laser at 2090nm was acquired with a slope efficiency of 24.6% (with respect to the input pump power). 2019 The American Ceramic Society
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源URL[http://ir.ciomp.ac.cn/handle/181722/62948]  
专题中国科学院长春光学精密机械与物理研究所
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H.Wu,G.-H.Pan,Z.Hao,et al. Laser-quality Tm:(Lu0.8Sc0.2)2O3 mixed sesquioxide ceramics shaped by gelcasting of well-dispersed nanopowders[J]. Journal of the American Ceramic Society,2019,102(8):4919-4928.
APA H.Wu.,G.-H.Pan.,Z.Hao.,L.Zhang.,X.Zhang.,...&H.Zhao.(2019).Laser-quality Tm:(Lu0.8Sc0.2)2O3 mixed sesquioxide ceramics shaped by gelcasting of well-dispersed nanopowders.Journal of the American Ceramic Society,102(8),4919-4928.
MLA H.Wu,et al."Laser-quality Tm:(Lu0.8Sc0.2)2O3 mixed sesquioxide ceramics shaped by gelcasting of well-dispersed nanopowders".Journal of the American Ceramic Society 102.8(2019):4919-4928.

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来源:长春光学精密机械与物理研究所

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