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[1]shangxiaohong,Theoretical insight on the effect of different positional N-substitution on the electronic structures and photophysical properties of five iridium(III) complexes bearing fluorine substituted 2,3′ -bipyridine and bromine substituted pyridinyltetrazolate ligands.Chemical Physics Letters,2022:1
[2]shangxiaohong,【核心通讯】有机金属铱(III)配合物吸收光谱和磷光光谱性质的密度泛函理论研究.化工新型材料,2021:3
[3]shangxiaohong,【SCI通讯】Theoretical investigation of the electronic structure and photophysical properties of a series of mixed‑carbene cyclometalated iridium(III) complexes with diferent ancillary ligands applied in phosphorescent organic light‑emitting diodes.Journal of Computational Electronics,2021:1
[4]shangxiaohong,韩德明,武志坚.(SCI)Theoretical study on the electronic structures and photophysical properties of a series of Ir(III) complexes based on substituted 2-(pyrazol-3-yl)pyridine ligand.Chemical Physics Letters,2013,588:1
[5]shangxiaohong,韩德明,张钢.(SCI)DFT/TDDFT study on the electronic structures and optoelectronic properties of a series of iridium(III) complexes based on quinoline derivatives in OLEDs.Journal of Physical Organic Chemistry,2013,26(10):1
[6](SCI)Theoretical study on the electronic structures and photophysical properties of a series of Ir(III) complexes based on substituted 2-(pyrazol-3-yl)pyridine ligand.Chemical Physics Letters,2013,588:1
[7]shangxiaohong,刘雨琦,曲晓春,武志坚.(SCI博士后)Theoretical study on electronic structures and optical properties of blue phosphorescent Iridium(III) complexes with C∧N and N∧N ligands.Journal of Luminescence,2013,143:1
[8]shangxiaohong,(SCI)Theoretical study of injection, transport, absorption and phosphorescence properties of a series of heteroleptic iridium(III) complexes in OLEDs.Chemical Physics Letters,2013,565:1
[9]shangxiaohong,(博SCI无长春工业大学署名)人参皂甙Re,结构与振动光谱的密度泛函理论研究.光谱学与光谱分析,2009,29(10):2
[10]shangxiaohong,[SCI通讯]Theoretical insight into the electronic structures and photophysical properties of two series of iridium(III) complexes with different substitute groups or substituent position.OPTOELECTRONICS AND ADVANCED MATERIALS – RAPID COMMUNICATIONS,2020:1
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