摘要: This paper focuses on the enhancement of thermal stability of Ag-Al2O3 nanocermet films by means of alloying of Ag nanoparticles with Al element. The optical analysis demonstrated the AgAl embedded Al2 O3 cermet films (namely, AgAl-Al2O3) possess excellent thermal tolerance even at 500◦C for 260h under nitrogen ambient. The evolution of microstructural and chemical properties of Al2O3/AgAl-Al2O3/Al2O3 stack layers during the annealing process was comprehensively investigated, in order to grasp the thermal stability mechanism. It is believed that the enhanced thermal stability was ascribed to the formation of fresh alumina as capping layer riveted on the Ag nanoparticles surfaces, which acted as the pinning points to prevent silver element from migrating so as to maintain the expected optical properties.
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分类:
物理学
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普通物理:统计和量子力学,量子信息等
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引用:
ChinaXiv:201705.00567
(或此版本
ChinaXiv:201705.00567V1)
DOI:10.12074/201705.00567V1
CSTR:32003.36.ChinaXiv.201705.00567.V1
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科创链TXID:
8f66097e-551b-4751-8d25-2443142c5932
- 推荐引用方式:
Tu, CJ [Tu, C. J.][ 1,2 ],Gao, JH [Gao, J. H.][ 2 ],Hui, S [Hui, S.][ 1,2 ],Lou, D [Lou, D.][ 1 ],Zhang, HL [Zhang, H. L.][ 2 ],Liang, LY [Liang, L. Y.][ 2 ],Jin, AP [Jin, A. P.][ 3 ],Zou, YS [Zou, Y. S.][ 1 ],Cao, HT [Cao, H. T.][ 2 ].Alloyed nanoparticle-embedded alumina nanocermet film: A new attempt to improve the thermotolerance.中国科学院科技论文预发布平台.[ChinaXiv:201705.00567V1]
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