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Personal Exposure to Fine Particulates and Polycyclic Aromatic Hydrocarbons in an Office Environment in Xi'an, China
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作者 Hongmei Xu Junji Cao +6 位作者 Meiling Gao Kin Fai Ho xinyi niu Teresa L. Coons Steven Sai Hang H0 Gehui Wang Zhuzi Zhao 《环境科学前沿(中英文版)》 2013年第4期33-45,共13页
关键词 多环芳香族碳氢化合物 环境保护 PM2 5 毒性
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The first chiral cerium halide towards circularly-polarized luminescence in the UV region
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作者 xinyi niu Zhichao Zeng +6 位作者 Zhaoyu Wang Haolin Lu Bing Sun Hao-Li Zhang Yongsheng Chen Yaping Du Guankui Long 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第6期1961-1968,共8页
Chiral organic-inorganic hybrid metal halides(OIHMHs)have attracted broader scientific community recently in spin lightemitting diodes,and circularly polarized light-emitting diodes.However,the emission peaks of the r... Chiral organic-inorganic hybrid metal halides(OIHMHs)have attracted broader scientific community recently in spin lightemitting diodes,and circularly polarized light-emitting diodes.However,the emission peaks of the reported chiral OIHMHs mainly locate in the visible region,and chiral OIHMH with ultraviolet(UV)circularly polarized luminescence(CPL)has been rarely reported.To fill this gap,cerium,a unique rare-earth(RE)element with tunable luminescence from UV to the visible region owing to the 4 f-related electronic transition,was introduced to construct the first RE-based chiral OIHMHs,R/S-MCC.The chirality is successfully transferred from the chiral organic cations to the inorganic cerium chloride framework in R/S-MCC,as confirmed by the single crystal structures,circular dichroism,and CPL.The emission spectra of R/S-MCC are in the UV region,originating from the characteristic d-f transition of Ce^(3+),which making the Ce-based metal halides are ideal candidates towards CPL light sources in the UV region.Notably,R-and S-MCC are the first RE-based OIHMHs,also the first chiral metalhalides with UV CPL.Our work opens a new avenue for the development of the chiral OIHMH family towards RE-based chiral OIHMH.The RE-based chiral metal halides couple the unique and superior optical,electrical,magnetic,and spintronic properties of RE elements with chirality could accelerate the development of chiral optoelectronics and spintronics toward real applications. 展开更多
关键词 chiral rare-earth halide ultraviolet circularly-polarized luminescence d-f transition rare-earth halide perovskite chiral perovskite
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