4.6 Article

Photoluminescence and semiconductor properties of two novel lanthanide-mercury compounds with one-dimensional chain-like structures

期刊

JOURNAL OF SOLID STATE CHEMISTRY
卷 266, 期 -, 页码 16-22

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jssc.2018.07.004

关键词

Europium; Lanthanide; Photoluminescence; Semiconductor; Terbium

资金

  1. NSF of China [21361013]
  2. Jiangxi Provincial Department of Education's Item of Science and Technology [GJJ170637]
  3. open foundation of the State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences [20180008]
  4. open foundation of the Key Laboratory of Jiangxi Province for Persistant Pollutants Control and Resources Recycle (Nanchang Hangkong University) [ST201522007]

向作者/读者索取更多资源

Two novel lanthanide-mercury compounds [Ln(IA)(3)(H2O)(2)] (Hg3Cl9)(n)center dot 4nH(2)O (Ln = Eu (1) and Tb (2); IA = isonicotinic acid) have been synthesized under solvothermal conditions and structurally characterized by single crystal X-ray diffraction. Both complexes exhibit one-dimensional (1D) chain-like structure with a novel isolated (Hg3Cl9)(3-) anion. Solid-state diffuse reflectance spectroscopy reveals the presence of wide optical band gaps of 2.81 eV and 3.47 eV, suggesting that they are potentially wide band gap organic semiconductor materials. Solid-state photoluminescence measurements uncover that they show red or green light emission bands, respectively. The emission bands can be assigned to the characteristic emission of the 4f electrons intrashell transitions of D-5(0) -> 7F(J) (Eu3+ J = 2 and 4) and D-5(4) 7F(J) (Tb3+, J = 6, 5, 4 and 3), respectively. Energy transfer mechanism is explained by the energy level diagram of Eu3+ ion, Tb3+ ion and isonicotinic acid ligand. The title compounds have remarkable CIE chromaticity coordinates of (0.6438, 0.3559) and (0.3172, 0.4773). This suggests that they may be potential candidates with red or green light emitting materials for white light emitting diodes (LEDs).

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