Yinglin Song
Harbin Institute of Technology
650 Papers
4.2K Citations
Yinglin Song is an academic researcher from Harbin Institute of Technology. The author has contributed to research in topics: Z-scan technique & Laser. The author has an hindex of 50, co-authored 587 publications. Previous affiliations of Yinglin Song include Nanjing University & Jiangsu University.
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Papers
Influence of transition metals Fe, Ni, and Nb on dehydrogenation characteristics of Mg(BH4)2: Electronic structure mechanisms
B. Shi,Yinglin Song +1 more
TL;DR: In this article, the influence of dopants on dehydrogenation properties of Mg(BH4)2 was investigated and it was shown that all dopants considered prefer to substitute for Mg with relatively smaller occupation energies comparing to the B substitution and the interstitial occupation.
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Excited-state nonlinearity measurements of ZnPcBr_4/DMSO
Guang Shi,Chunying He,Yunbo Li,Ruixue Zou,Xueru Zhang,Yuxiao Wang,Kun Yang,Yinglin Song,C. H. Wang +8 more
TL;DR: In this paper, a modified picosecond time-resolved pump-probe system based on a 4f nonlinear imaging technique with phase object was used to determine the excited-state absorptive and refractive nonlinearities of a ZnPcBr4/DMSO solution.
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Fabrication of ultrathin films with large third-order nonlinear optical properties.
Li Jiang,Li Jiang,Fushen Lu,Qing Chang,Yang Liu,Huibiao Liu,Yuliang Li,Wei Xu,Guanglei Cui,Junpeng Zhuang,Xiaofang Li,Shu Wang,Yinglin Song,Daoben Zhu +13 more
TL;DR: An ultrathin composite film containing anionic Ag-His complexes (His: L-Histidine) and oppositely charged BH-PPV was fabricated by means of the electrostatic layer-by-layer self-assembly technique.
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Enhanced optical limiting properties in a novel metallophthalocyanine complex (C12H25O)8PcPb
TL;DR: In this paper, the optical limiting performance of the lead phthalocyanine complex with the substituent group of octa-dodecaoxyl long chains in toluene was investigated.
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Excited state absorption dynamics in metal cluster polymer [WS4Cu3I(4-bpy)3]n solution.
TL;DR: The experimental results show that the metal cluster has strong nonlinear absorption under the 8 ns pulse excitation and a relatively weak nonlinear absorptive property under the picosecond pulseexcitation.
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