刘伟

-
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:博士研究生毕业
- 学位:博士后
- 在职信息:在职
- 所在单位:晶体材料研究院(晶体材料全国重点实验室)
- 入职时间: 1999-07-08
- 所属院系:
晶体材料研究院
- 学科:材料科学与工程
访问量:
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[21]
乔靖.
The vital application of rare earth for future high-performance electromagnetic wave absorption materials: A review.
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY,
176,
2023.
-
[22]
张雪.
Conductive Metal-Organic Frameworks with Tunable Dielectric Properties for Boosting Electromagnetic Wave Absorption.
ACS nano,
17,
2023.
-
[23]
刘畅.
Versatile cellulose nanofibril assisted preparation of ultralight, scalable carbon nanotube aerogel-based electromagnetic wave absorbers with ultrahigh reflection loss.
Carbon,
213,
2023.
-
[24]
李宾.
Metal sulfides based composites as promising efficient microwave absorption materials: A review.
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY,
104,
2021.
-
[25]
田浩源.
ZIF-67-derived Co/C embedded boron carbonitride nanotubes for efficient electromagnetic wave absorption.
Chemical Engineering Journal,
450,
2022.
-
[26]
杨云霏.
Construction of Ni-Zn bimetal sulfides Heterostructured-hybrids for High-performance electromagnetic wave absorption.
胶体与界面,
606,
2021.
-
[27]
.
Hydrogel-based composites beyond the porous architectures for electromagnetic interference shielding.
NANO RESEARCH,
15,
2022.
-
[28]
韩明睿.
Recent advance in three-dimensional porous carbon materials for electromagnetic wave absorption.
SCIENCE CHINA Materials,
65,
2022.
-
[29]
李宾.
Graphene Oxide-Assisted Multiple Cross-Linking of MXene for Large-Area, High-Strength, Oxidation-Resistant, and Multifunctional Films.
Advanced functional materials,
2022.
-
[30]
张如娜.
Scalable manufacturing of light, multifunctional cellulose nanofiber aerogel sphere with tunable microstructure for microwave absorption.
Carbon,
2022.
-
[31]
张雪.
In-Situ Fabrication of Sustainable-N-Doped-Carbon-Nanotube-Encapsulated CoNi Heterogenous Nanocomposites for High-Efficiency Electromagnetic Wave Absorption.
Small,
2023.
-
[32]
张如娜.
Ultralight aerogel sphere composed of nanocellulose-derived carbon nanofiber and graphene for excellent electromagnetic wave absorption.
NANO RESEARCH,
2023.
-
[33]
.
Wood biomass-derived carbon for high-performance electromagnetic wave absorbing and shielding.
Carbon,
2023.
-
[34]
.
Synthesis, crystal structure and biological evaluation of thyroid cancer targeting photosensitizer for photodynamic therapy.
Journal of Photochemistry & Photobiology, A:,
2022.
-
[35]
欧阳安成.
Covalent RGD–graphene–phthalocyanine nanocomposite for fluorescence imaging-guided dual active/passive tumor-targeted combinatorial phototherapy.
J. Mater. Chem. B,,
306,
2022.
-
[36]
白玉俊.
Promoting the normal and low temperature performances of natural graphite by the F-doping derived from PVDF modification.
ACS Applied Electronic Materials,
2022.
-
[37]
白玉俊.
Constructing melamine coating convertible into solid electrolytes to enhance the electrochemical performance of Li2ZnTi3O8 anode.
Materials Today Sustainability,
100192,
2022.
-
[38]
白玉俊.
Effectively raising the rate performance and cyclability of graphite anode via hydrothermal modification with melamine and its electrochemical derivatives.
new journal of chemistry,
2022.
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[39]
刘畅.
Noncovalent self-assembly of a minuscule amount of nickel porphyrin on carbon nanotube for high-performance electromagnetic wave absorbing.
Composites Part A: Applied Science and Manufacturing,
2022.
-
[40]
杨云霏.
Biomimetic Porous MXene-Based Hydrogel for High-Performance and Multifunctional Electromagnetic Interference Shielding.
ACS Materials Lett.,
2022.