宋振
个人信息
Personal information
教师英文名称:Songzhen
职称:教授
毕业院校:北京科技大学
学科:材料物理与化学
学历:研究生
学位:博士
所在单位:材料科学与工程学院
职务:材料物理与化学系副主任
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- [21] Fang Yi Zhao,Zhen Song, Quan Lin Liu.Advances in Fe3+-activated luminescent materials for near-infrared light sources.[期刊论文].Progress in Solid State Chemistry,2024,100456.
- [22] Zhen Song,Zaisheng Wen, Feng Chen, Mingyue Chen, Leopoldo Suescun, Quanlin Liu.Polyhedron Distortion and Site-Specific Rigidity in Garnet-Type Compounds.[期刊论文].Crystal Growth & Design,2024,24(5):2226-2234.
- [23] Zhen Song,P. A. Tanner, Quanlin Liu.Host dependency of boundary between strong and weak crystal field strength of cr3+ luminescence.[期刊论文].JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024,15(9):2319-2324.
- [24] Shiyou Zhang,Fangyi Zhao, Shengqiang Liu, Zhen Song, Quanlin Liu.An improved method to evaluate trap depth from thermoluminescence.[期刊论文].Journal of Rare Earths,2024,
- [25] Chao Dou,Chuxin Cai, Zhen Song, Quanlin Liu.Broadband Near-Infrared Sr3Al9.8SiO20:0.2Cr Phosphor Realized by Crystallographic Site Engineering.[期刊论文].Inorganic Chemistry,2024,63(1):902-908.
- [26] Chao Dou,Chuxin Cai, Zhen Song, Quanlin Liu.Highly Quantum Efficient and Thermally Stable Near‐Infrared‐Emitting K‐β‐Al2O3:Cr3+ Phosphor.[期刊论文].Advanced Optical Materials,2024,12(4):2301579.
- [27] Shengqiang Liu,Yang Guo, Ming Zhao, Jingxuan Du, Zhen Song, Xin Zhang, Feng Wang, Quanlin Liu.NIR-II Luminescence With A Recorded 76% EQE Through Energy Extraction From Dark Cr3+.[期刊论文].Laser & Photonics Reviews,2024,18(12):2400475.
- [28] Chao Dou,Zhen Song, Quanlin Liu.Progress of Ce3+ /Eu2+ doped phosphors for violet chip based full-spectra lighting.[期刊论文].Journal of Materials Chemistry C,2024,12(30):11209-11241.
- [29] Jingxuan Du,Shengqiang Liu, Zhen Song, Quanlin Liu.All-Inorganic Green Synthesis of Small-Sized and Efficient K2SiF6:Mn4+ Phosphor for Mini-LED Displays.[期刊论文].ACS Applied Materials & Interfaces,2023,15(46):53738-53745.
- [30] Yongcheng Huo,Hao Cai, Yuhe Shao, Zhen Song, Quanlin Liu.Enabling Yb3+ Luminescence with Visible Light Response in Mg2GeO4 via Energy Transfer.[期刊论文].Inorganic Chemistry,2023,62(35):14402-14410.
