Changchun Institute of Optics,Fine Mechanics and Physics,CAS
Comparative analyses of optical limiting effects in metal nanoparticles and perovskite nanocrystals | |
K.S.Rao; R.A.Ganeev; K.Zhang; Y.Fu; G.S.Boltaev; S.K.Maurya | |
2019 | |
发表期刊 | Optical Materials
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ISSN | 0925-3467 |
卷号 | 92页码:366-372 |
摘要 | This paper reports the comprehensive comparative study of absorptive nonlinear optical limiting among metal nanoparticles, quantum dots, and perovskites using 60 fs, 800 nm laser pulses. The metal nanoparticles include Al, Ti, Co, Ni, Zn, Ag, Sn, In, W, Au and the quantum dots of Ag2S, and finally the perovskites such as CsPbBr3 and CsPbI2Br. We systematically characterized all materials mentioned above using absorption spectra and scanning electron microscope. We demonstrate that the light-induced nonlinear absorption leads to optical limiting. The suspensions of the reported samples demonstrated low threshold of optical limiting, which can be explained by strong two-photon absorption in these solutions. The gold nanoparticles (10-30 nm) show the lowest threshold of optical limiting (3.26 mJ cm(-2)). |
关键词 | Optical limiting,Nanoparticles,Perovskites,Quantum dots,Nonlinear,absorption,Nanocrystals,reverse saturable absorption,laser-ablation,ag nanoparticles,silver,gold,nonlinearities,semiconductors,fullerenes,dots,Materials Science,Optics |
DOI | 10.1016/j.optmat.2019.04.058 |
收录类别 | SCI ; EI |
语种 | 英语 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://ir.ciomp.ac.cn/handle/181722/63100 |
专题 | 中国科学院长春光学精密机械与物理研究所 |
推荐引用方式 GB/T 7714 | K.S.Rao,R.A.Ganeev,K.Zhang,et al. Comparative analyses of optical limiting effects in metal nanoparticles and perovskite nanocrystals[J]. Optical Materials,2019,92:366-372. |
APA | K.S.Rao,R.A.Ganeev,K.Zhang,Y.Fu,G.S.Boltaev,&S.K.Maurya.(2019).Comparative analyses of optical limiting effects in metal nanoparticles and perovskite nanocrystals.Optical Materials,92,366-372. |
MLA | K.S.Rao,et al."Comparative analyses of optical limiting effects in metal nanoparticles and perovskite nanocrystals".Optical Materials 92(2019):366-372. |
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