副教授
硕士生导师
性别:男
毕业院校:山东大学
学历:博士研究生毕业
学位:博士生
在职信息:在职
所在单位:材料科学与工程学院
入职时间:2016-02-29
联系方式:15662728800
访问量:
最后更新时间:..
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[1]
张烨.
In Situ Synthesis of Self-Assembly Supramolecular Crystal Seeds within Continuous Carbon Nanofibers for Improved Fiber Graphitic Structure.
ACS nano,
18,
2024.
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[2]
Li, Jianwei.
Multifunctional carbon fiber@NiCo/polyimide films with outstanding electromagnetic interference shielding performance.
Chemical Engineering Journal,
427,
2022.
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[3]
张烨.
Rapid In Situ Polymerization of Polyacrylonitrile/Graphene Oxide Nanocomposites as Precursors for High-Strength Carbon Nanofibers.
ACS Applied Materials & Interfaces,
13,
16846,
2021.
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[4]
虞军伟.
Precise control of ultramicropore structure of activated carbon fiber for the application of Cu(II) adsorption/electro-adsorption.
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING,
9,
2021.
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[5]
王岩君.
Infrared emission characteristic and microwave loss property of aluminum doped zinc oxide nanoparticles.
Ceramics International,
47,
2456,
2021.
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[6]
高权.
Microfibril alignment induced by stretching fields during the dry-jet wet spinning process: Reinforcement on polyacrylonitrile fiber mechanical properties.
Polymer Testing,
81,
2020.
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[7]
高权.
Visualization of microfibrillar elements in cross-section of polyacrylonitrile fiber along the fiber spinning line.
MICROSCOPY RESEARCH AND TECHNIQUE,
82,
2026,
2019.
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[8]
高权.
Effect of spinning speed on microstructures and mechanical properties of polyacrylonitrile fibers and carbon fibers.
Ceramics International,
46,
23059,
2020.
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[9]
高权.
From Microfibrillar Network to Lamellae during the Coagulation Process of Polyacrylonitrile Fiber: Visualization of Intermediate Structure Evolution.
Macromolecules,
53,
8663,
2020.
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[10]
高权.
Force field in coagulation bath at low temperature induced microfibril evolution within PAN nascent fiber and precursor fiber.
JOURNAL OF APPLIED POLYMER SCIENCE Journal,
137,
2020.
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[11]
王岩君.
Infrared emission characteristic and microwave loss property of aluminum doped zinc oxide nanoparticles.
CERAMICS INTERNATIONAL,
2456,
2021.
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[12]
朱波 , 王延相 and 王成国.
混合溶液中聚丙烯腈纺丝原液的可纺性.
《高分子材料科学与工程》,
2013.
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[13]
王成国 and 于美杰.
Force field in coagulation bath at low temperature induced microfibril evolution within PAN nascent fiber and precursor fiber.
Journal of applied polymer science,
2020.
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[14]
朱波 , 蔡珣 , 乔琨 , 赵圣尧 and 袁晓敏.
Micro-configuration controlled interfacial adhesion by grafting graphene oxide onto carbon fibers.
Composites Part A: Applied Science and Manufacturing,
37,
83,
2018.
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[15]
朱波 , 蔡珣 , 乔琨 , 赵圣尧 and 袁晓敏.
Influence of different surface treatments on the interfacial adhesion of graphene oxide/carbon fiber/epoxy composites.
Applied Surface Science,
41,
996,
2018.
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[16]
朱波 , 蔡珣 , 赵圣尧 and 乔琨.
Effects of Particle Size and Distribution of the Sizing Agent on Carbon Fiber/Epoxy Composites Interfacial Adhesion.
polymer composites,
39,
2036,
2018.
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[17]
朱波 , 蔡珣 , 乔琨 and 赵圣尧.
Nanoscale Toughening of Carbon Fiber-Reinforced Epoxy Composites Through Different Surface Treatments.
Polymer Engineering and Science,
59,
625,
2019.
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[18]
赵圣尧 and 朱波.
超声处理在聚丙烯腈溶解中的作用.
化工学报,
66,
848,
2015.
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[19]
赵圣尧 and 朱波.
利用双螺杆挤出机溶解聚丙烯腈.
化工学报,
66,
1970,
2016.
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[20]
朱波 , 蔡珣 , 乔琨 , 赵圣尧 and 袁晓敏.
Influence of different surface treatments on the interfacial adhesion of graphene oxide/carbon fiber/epoxy composites.
Applied surface science,
458,
996,
2018.
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