硕士生导师

当前位置: 首页 > 师资队伍 > 硕士生导师 > 正文

王慧奇

发布时间:2015-07-03阅读数:
学 科 材料学

1BA81

    
出生年月 1985-10
最高学位 博士
专业技术职称 副教授
博/硕导 硕导
政治面貌 党员
办公电话 0351-3557519
电子信箱 hqiwang@nuc.edu.cn

 

一、基本情况

王慧奇,工学博士,山西省优秀青年学术带头人。主要从事能源存储材料设计与制备技术研究。在SmallJ. Mater. Chem. ACarbonJ. Power SourcesElectrochimica Acta 等期刊上发表SCI论文20余篇,获授权国家发明专利10项。目前作为负责人主持国家自然科学基金、山西省重点研发计划项目(高新领域)、山西省青年科学基金、山西省高等学校科技创新计划项目等多项。作为科研骨干参研国家级、省部级项目6项。中国化学会会员、中国化工学会会员。8份期刊(Chemistry of materialsACS Sustainable Chemistry & EngineeringThe Journal of physical chemistryCarbonJournal of power sourcesJournal of Solid State ElectrochemistryJournal of Nanoscience and NanotechnologyJournal of porous materials)的特约审稿人。

二、研究方向

1. 硼纳米结构的设计与合成

2. 离子储能机理(金属离子电池、锂硫电池、超级电容器)

3. 硼催化石墨化技术

三、主持科研项目

1.高储钠能力类石墨烯硼碳新结构的制备及调控机制,国家自然科学基金 主持

2.高速列车刹车闸片用C/C-SiC复合材料的制备新技术开发,山西省重点研发计划 主持

3.原子晶体硼对炭材料微观结构的可控构筑及与锂离子储能的相关性,山西省青年基金项目 主持

4.钢筋混凝土表面煤基超疏水炭涂层的仿生设计、构筑及其防护机理研究,山西高等学校科技创新项目 主持

5.硼原子改性多孔炭材料抗氧化机制分析,中北大学青年科学基金 主持

四、主要研究成果

12. Ultrathin NiCo-MOF Nanosheets for High-Performance Supercapacitor Electrodes. ACS Applied Energy Materials 2019, 2, 2063–2071.

11. Urchin-like Ni1/3Co2/3(CO3)0.5OH0.11H2O anchoring on polypyrrole nanotubes for supercapacitor electrodes. Electrochimica Acta 2019, 295, 989–996. (TOP, IF=5.383)

10. In-situ incorporation of carbon dots into mesoporous nickel boride for regulating photocatalytic activities. Carbon 2018, 137, 484–492. (TOP, IF=7.466)

9. Carbon-Dot-Based Heterojunction for Engineering Band-Edge Position and Photocatalytic Performance. Small 2018, 1803447. (TOP, IF=10.856)

8. Three-dimensional B-doped porous carbon framework anchored with ultrasmall PbO/Pb nanocrystals for lithium storage. Ceramics International, 2017, 43, 12442–12451. (TOP, IF=3.450)

7. Highly microporous graphite-like BCxO3-x/C nanospheres for anode materials of lithium-ion batteries. Journal of Materials Chemistry A 2017, 5, 2835–2843. (TOP, IF=10.733)

6. Microstructural evolution and oxidation resistance of polyacrylonitrile–based carbon fibers doped with boron by the decomposition of B4C, CARBON 2013, 56, 296–308. (TOP, IF=7.466)

5. Microstructure and thermophysical properties of B4C/graphite composites containing substitutional boron, CARBON 2013, 52, 10–16. (TOP, IF=7.466)

4. A facile route for PbO@C Nanocomposites: An Electrode Candidate for Lead–acid Batteries with Enhanced Capacitance, JOURNAOL OF POWER SOURCES 2013, 224, 125131. (TOP, IF=7.467)

3. A sandwich structure graphite block with excellent thermal and mechanical properties reinforced by in-situ grown carbon nanotubes. CARBON 2013, 51, 427–30. (TOP, IF=7.466)

2. Microstructure and thermal/mechanical properties of short carbon fiber-reinforced natural graphite flake composites with mesophase pitch as the binder. CARBON 2013, 53, 313–20. (TOP, IF=7.466)

1. Exfoliated graphite as a flexible and conductive support for Si-based Li-ion battery anodes. CARBON 2014, 72, 38–46. (TOP, IF=7.466)

五、个人主页

https://www.mendeley.com/profiles/huiqi-wang3/(英文)

http://www.polymer.cn/ss/hqiwang/index.html