戴瑛
个人信息Personal Information
教授 博士生导师 硕士生导师
性别:女
毕业院校:山东大学
学历:研究生(博士后)
学位:理学博士学位
在职信息:在职
所在单位:School of Physics
入职时间:1984-07-01
学科:材料物理与化学
物理化学
原子与分子物理
凝聚态物理
联系方式:86-13906405623
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- [241] 黄柏标 , 刘媛媛 , 王泽岩 , 王朋 , 郑昭科 , 秦晓燕 , 张晓阳 , 戴瑛 and 张若倩. Post-synthetic platinum complex modification of a triazine based metal organic frameworks for enhanced photocatalytic H-2 evolution. journal of solid state chemistry, 271, 260, 2019.
- [242] 黄柏标 , 刘媛媛 , 王泽岩 , 王朋 , 郑昭科 , 张晓阳 , 秦晓燕 , 戴瑛 and 邢丹宁. Enhanced photocatalytic hydrogen evolution of CdWO4 through polar organic molecule modification. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY Journal, 44, 4754, 2019.
- [243] 杨再兴 , 马衍东 , 戴瑛 and 孙嘉敏. Ultrahigh Hole Mobility of Sn-Catalyzed GaSb Nanowires for High Speed Infrared Photodetectors. Nano Letters, 2019.
- [244] 黄柏标 , 刘媛媛 , 王泽岩 , 王朋 , 郑昭科 , 秦晓燕 , 张晓阳 , 戴瑛 and 张若倩. A water-stable triazine-based metal-organic framework as an efficient adsorbent of Pb(II) ions. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS Journal, 560, 315, 2019.
- [245] 黄柏标 , 刘媛媛 , 王泽岩 , 王朋 , 郑昭科 , 戴瑛 , 秦晓燕 , 张晓阳 and 安阳. Stabilizing the titanium-based metal organic frameworks in water by metal cations with empty or partially-filled d orbitals. Journal of Colloid and Interface Science 2012, 533, 9, 2019.
- [246] 王泽岩 , 黄柏标 and 戴瑛. Synthesis and activity of plasmonic photocatalysts. ChemCatChem, 6, 2456, 2014.
- [247] 魏巍 , 黄柏标 , 戴瑛 and 吕兴帅. Two-dimensional GeSe for high performance thin-film solar cells. Journal of Materials Chemistry A, 6, 5032, 2018.
- [248] 魏巍 , 黄柏标 , 戴瑛 and 王昊. Electronic and magnetic properties of the one-dimensional interfaces of two-dimensional lateral GeC/BP heterostructures. PHYSICAL CHEMISTRY CHEMICAL PHYSICS Journal, 21, 8856, 2019.
- [249] 魏巍 , 黄柏标 and 戴瑛. Photoexcited charge carrier behaviors in solar energy conversion systems from theoretical simulations. WILEY INTERDISCIPLINARY REVIEWS-COMPUTATIONAL MOLECULAR SCIENCE, 2019.
- [250] 魏巍 , 黄柏标 , 戴瑛 and 吕兴帅. Metal-Free B@g-CN: Visible/Infrared Light-Driven Single Atom Photocatalyst Enables Spontaneous Dinitrogen Reduction to Ammonia. Nano Letters, 19, 6391, 2019.
- [251] 魏巍 , 黄柏标 , 戴瑛 and 吕兴帅. Multifunctional electrocatalyst PtM with low Pt loading and high activity towards hydrogen and oxygen electrode reactions: A computational study. 应用催化B, 255, 2019.
- [252] 魏巍 , 黄柏标 , 戴瑛 and 吴倩. Computational screening of MX (M = Ga, Ge, Sn, In; X = As, Se) van der Waals heterostructures as suitable candidates for solar cells. Journal of Physics D: Applied Physics, 52, 2019.
- [253] 王泽岩 , 黄柏标 , 郑昭科 , 刘媛媛 , 张晓阳 , 秦晓燕 and 戴瑛. An efficient UV, Visible and Near-Infrared Responsive Photocatalyst and Intense Single-Band Red Emission by Yb3+, Er3+ doped Bi20TiO32. ACS Applied Nano Materials, 2, 5381, 2019.
- [254] 王泽岩 , 李英杰 , 黄柏标 , 郑昭科 , 王朋 , 刘媛媛 , 张晓阳 , 秦晓燕 and 戴瑛. Graphitic carbon nitride tetragonal hollow prism with enhanced photocatalytic hydrogen evolution. International Journal of Hydrogen Energy , 44, 28780, 2019.
- [255] 王泽岩 , 黄柏标 , 王朋 , 刘媛媛 , 张晓阳 , 秦晓燕 and 戴瑛. Endotaxial Growth of [100]-oriented TaON Films on LiTaO3 Single Crystals for Enhanced Photoelectrochemical Water Splitting. Solar RRL, 2, 1700243, 2018.
- [256] 王泽岩 , 黄柏标 , 张晓阳 , 秦晓燕 , 王朋 , 刘媛媛 , 戴瑛 and 李英杰. Fabrication of In2O3/ZnO hetero-epitaxial-junctions with enhanced PEC performances. Materials Today Energy, 6, 65, 2017.
- [257] 赵显 , 程秀凤 , 戴瑛 and 黄柏标. Structural, electronic, and optical properties of N-doped SnO2. JOURNAL OF PHYSICAL CHEMISTRY C, 112, 9861, 2008.
- [258] 戴瑛 , 张晓阳 , 秦晓燕 , 黄柏标 and 郑昭科. Facile Synthesis of SrTiO3 Hollow Microspheres Built as Assembly of Nanocubes and Their Associated Photocatalytic Activity. J. Colloid Interface Sci. , 2011.
- [259] 戴瑛 , 张晓阳 , 秦晓燕 , 黄柏标 , 郑昭科 and Myung-Hwan Whangbo. Facile in Situ Synthesis of Visible-Light Plasmonic Photocatalysts M@TiO2 (M = Au, Pt, Ag) and Evaluation of Their Photocatalytic Oxidation of Benzene to Phenol. J. Mater. Chem., 2011.
- [260] 郑昭科 , 戴瑛 , 张晓阳 , 秦晓燕 and 黄柏标. Hierarchical TiO2 Microspheres: Synergetic Effect of {001} and {101} Facets for Enhanced Photocatalytic Activity. Chem. Eur. J. , 2011.