教授
博士生导师
硕士生导师
性别:男
在职信息:在职
所在单位:晶体材料研究院
入职时间:2011-08-12
联系方式:fapengyu@sdu.edu.cn
访问量:
最后更新时间:..
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[61]
樊梦迪.
Spontaneous Growth of CaBi(4)Ti(4)O(15)Piezoelectric Crystal Using Mixed Flux Agents.
CRYSTALS,
10,
2020.
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[62]
孙秀彩.
Effect and Mechanism of Hydrogen-Assisted Sulfur Intercalation for Decoupling Graphene from Cu(111) Substrate: A First-Principles Study.
Applied Surface Science,
567,
2021.
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[63]
罗兴云.
Charge-neutral epitaxial graphene on 6H-SiC(0001) via FeSi intercalation.
CARBON,
156,
187,
2019.
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[64]
罗兴云.
Theoretical prediction of eliminating the buffer layer and achieving charge neutrality for epitaxial graphene on 6H-SiC(0001) via boron compound intercalations.
CARBON,
161,
323,
2020.
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[65]
卢鑫雨.
Origin of the abnormal reduction of the dielectric response for ReCOB crystals and its mechanism: theoretical and experimental exploration.
Journal of Materials Chemistry C,
8,
10109,
2020.
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[66]
李妍璐.
A Strategy To Prepare High-Quality Monocrystalline Graphene: Inducing Graphene Growth with Seeding Chemical Vapor Deposition and Its Mechanism.
ACS Applied Materials & Interfaces,
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[67]
李妍璐.
Graphene Nucleation Preference at CuO Defects Rather Than Cu2O on Cu(111): A Combination of DFT Calculation and Experiment.
ACS Applied Materials & Interfaces,
2018.
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[68]
于法鹏.
Noncentrosymmetric Orthophosphate YM3(PO4)3 (M = Sr, Ba) Crystals: Single Crystal Growth, Structure, and Properties.
Crystal growth & Design,
2020.
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[69]
李妍璐.
Origin of the abnormal reduction of the dielectric response for ReCOB crystals and its mechanism: theoretical and experimental exploration.
JOURNAL OF MATERIALS CHEMISTRY C,
2020.
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[70]
于法鹏.
CRYSTAL GROWTH AND ELECTRO-ELASTIC PROPERTY CHARACTERIZATION OF YTTRIUM STRONTIUM PHOSPHATE.
2019.
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[71]
于法鹏.
INFLUENCE OF TIGHTING TORQUE ON THE PERFORMANCE OF HIGH TEMPERATURE PIEZOELECTRIC VIBRATION SENSOR USING BTS CRYSTAL.
2019.
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[72]
于法鹏.
DETERMINING THE INDEPENDENT PIEZOELECTRIC COEFFICIENTS USING LASER INTERFEROMETRIC METHOD.
2019.
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[73]
李妍璐.
Electrical conduction mechanism of rare-earth calcium oxyborate high temperature piezoelectric crystals.
Acta Materialia,
2019.
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[74]
于法鹏.
Damage mechanism and electro-elastic stability of LiNbO3 crystals irradiated with 6 MeV Xe23+.
RSC Advances,
2020.
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[75]
于法鹏.
Evaluation of Electroelastic Properties of YCOB and GdCOB Crystals Irradiated by 6 MeV Xe23+ Ions.
CRYSTAL GROWTH & DESIGN,
2020.
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[76]
孙丽.
Effect of Ag nanoparticles on wafer-scale quasi-free-standing graphene characterization by surface enhanced Raman spectroscopy.
MATERIALS RESEARCH EXPRESS,
7,
2020.
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[77]
段秀兰.
Synthesis, Electronic Structure, and Electrochemical Properties of the Cubic Mg2MnO4 Spinel with Porous-Spongy Structure.
Nanomaterials ,
1122,
2021.
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[78]
段秀兰.
Cation Distribution in Co-Doped ZnAl2O4 Nanoparticles Studied by X-ray Photoelectron Spectroscopy and 27Al Solid-State NMR Spectroscopy.
Inorganic chemistry,
50,
5460,
2011.
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[79]
孙秀彩.
Effect of BN seeds on locating and promoting the initial nucleation of graphene on Cu substrate and its mechanism: A theoretical study.
Applied Surface Science,
2020.
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[80]
罗兴云.
Charge-neutral epitaxial graphene on 6HeSiC(0001) via FeSi intercalation.
Carbon,
156,
187,
2019.
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