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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[21]
王珍彦.
Synthesis of porous Mn-based spinel microspheres with enhanced lithium storage properties.
JOURNAL OF ALLOYS AND COMPOUNDS ,
166237,
2022.
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[22]
孙秀彩.
Effects of H-2 pre-etching on BN seed morphology and induced graphene synthesis on Cu substrate: A theoretical study.
Applied Surface Science,
537,
2020.
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[23]
孙丽.
Pinning and Anharmonic Phonon Effect of Quasi-Free-Standing Bilayer Epitaxial Graphene on SiC.
NANOMATERIALS,
12,
2022.
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[24]
樊梦迪.
Kyropoulos growth and characterization of monoclinic alpha-Bi2B8O15 single crystal with a noncentrosymmetric structure.
CRYSTENGCOMM,
24,
379,
2022.
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[25]
武广达.
Nd-doped structurally disordered YSr3(PO4)(3) single crystal: Growth and laser performances.
稀土学报(英文版),
39,
1540,
2021.
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[26]
武广达.
Structural disordered orthophosphate crystal Nd3+:YBa3(PO4)(3) with cubic symmetry.
MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS,
276,
2022.
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[27]
姜超.
Phase transition regulation and piezoelectric performance optimization of fresnoite crystals for high-temperature acceleration sensing.
JOURNAL OF MATERIALS CHEMISTRY C,
10,
180,
2021.
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[28]
王国良.
High performance piezoelectric crystal cut designed using LiNbO3 for high temperature acoustic emission sensing application.
CRYSTENGCOMM,
24,
691,
2022.
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[29]
张雪.
Roles of CuO and Cu2O in graphene growth on a copper substrate.
Applied surface science,
576,
2021.
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[30]
武广达.
Growth, Optical, and Spectroscopic Properties of Pure and Nd3+-Doped GdSr3(PO4)(3) Crystals with Disordered Structure.
Inorganic chenistry,
61,
170,
2022.
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[31]
姜超.
High-temperature Vibration Sensor Based on Ba2TiSi2O8 Piezoelectric Crystal With Ultra-Stable Sensing Performance up to 650 degrees C.
IEEE Transactions on Industrial Electronics,
68,
12850,
2021.
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[32]
武广达.
Electro-elastic features of YBa3(PO4)(3) and YbBa3(PO4)(3) crystals with pure face-shear mode for acoustic wave sensor applications.
Journal of Materiomics,
7,
828,
2021.
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[33]
田世伟.
Electrical conduction mechanism of rare-earth calcium oxyborate high temperature piezoelectric crystals.
ACTA MATERIALIA,
183,
165,
2020.
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[34]
于平章.
Crystal growth, optical, thermal and piezoelectric properties of HoCa4O(BO3)(3) crystal.
CRYSTENGCOMM,
2021.
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[35]
谢琳芳.
Properties and Applications of Flexible Poly(Vinylidene Fluoride)-Based Piezoelectric Materials.
CRYSTALS,
11,
2021.
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[36]
田世伟.
Damage mechanism and electro-elastic stability of LiNbO(3)crystals irradiated with 6 MeV Xe23+.
RSC ADVANCES,
10,
21754,
2020.
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[37]
武广达.
Noncentrosymmetric Orthophosphate YM3(PO4)(3) (M = Sr, Ba) Crystals: Single Crystal Growth, Structure, and Properties.
CRYSTAL GROWTH & DESIGN,
20,
2390,
2020.
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[38]
李迎仙.
Direct Synthesis of Graphene Dendrites on SiO2/Si Substrates by Chemical Vapor Deposition.
NANOSCALE RESEARCH LETTERS,
15,
2020.
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[39]
田世伟.
Evaluation of Electroelastic Properties of YCOB and GdCOB Crystals Irradiated by 6 MeV Xe23+ Ions.
CRYSTAL GROWTH & DESIGN,
20,
2651,
2020.
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[40]
陈菲菲.
Temperature-dependent behaviours of electro-elastic constants for the Bi2ZnB2O7 piezoelectric crystal.
CrystEng Comm,
23,
391,
2021.
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