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A beryllium-free deep-UV nonlinear optical material CsNaMgP2O7 with honeycomb-like topological layers
Zhao, S. G.; Yang, Y.; Shen, Y. G.; Wang, X. D.; Ding, Q. R.; Li, X. F.; Li, Y. Q.; Li, L. N.; Lin, Z. S.; Luo, J. H.
2018
发表期刊Journal of Materials Chemistry C
ISSN2050-7526
卷号6期号:15页码:3910-3916
摘要Few nonlinear optical (NLO) materials are available for deep-UV second-harmonic generation (SHG), limited by the fundamental requirements of the structure-directing optical properties. KBe2BO3F2 is the sole exception, but it suffers from the high toxicity of the compositional beryllium element and a serious layering growth tendency. Here, we report a beryllium-free deep-UV NLO phosphate with honeycomb-like topological structural layers, namely, CsNaMgP2O7. The phosphate exhibits an enhanced SHG response of 1.1 times that of KH2PO4, which is comparable to that of KBe2BO3F2. Based on theoretical analysis, the enhanced SHG response can be well rationalized. Meanwhile, CsNaMgP2O7 possesses a reinforced interlayer bonding of about 2.95 times that of KBe2BO3F2, which is very favorable to mitigate the layering growth tendency. This work will be helpful to better understand the structure-property relationships in deep-UV NLO materials.
关键词strong 2nd-harmonic generation crystals borate pseudopotentials coefficients nitrate design growth units sr Materials Science Physics
DOI10.1039/c8tc00415c
收录类别SCI ; EI
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/60863
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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Zhao, S. G.,Yang, Y.,Shen, Y. G.,et al. A beryllium-free deep-UV nonlinear optical material CsNaMgP2O7 with honeycomb-like topological layers[J]. Journal of Materials Chemistry C,2018,6(15):3910-3916.
APA Zhao, S. G..,Yang, Y..,Shen, Y. G..,Wang, X. D..,Ding, Q. R..,...&Luo, J. H..(2018).A beryllium-free deep-UV nonlinear optical material CsNaMgP2O7 with honeycomb-like topological layers.Journal of Materials Chemistry C,6(15),3910-3916.
MLA Zhao, S. G.,et al."A beryllium-free deep-UV nonlinear optical material CsNaMgP2O7 with honeycomb-like topological layers".Journal of Materials Chemistry C 6.15(2018):3910-3916.
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