木材科学与家具工程系

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万才超教授/副院长

发布人: 发布日期:2022-05-25

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一、基本信息

职称:教授

电话:15244674707

邮箱:wancaichaojy@163.com

地址:湖南省长沙市韶山南路498号伟德BETVLCTOR1946始于英国bevictor伟德官网

 

个人简介:

万才超,男,博士,教授,博士生导师,国家万人计划青年拔尖人才、国际VEBLEO学会会士(Fellow)、中国科协青年托举工程、国家林草创新青年拔尖人才、湖南省湖湘青年英才、中国科协科创中国平台入库专家。

 

学习经历:

20109—20146月,东北林业大学bevictor伟德官网,木材科学与技术,学士;

20149—20186月,东北林业大学bevictor伟德官网,木材科学与技术,博士。

 

任职情况:

20186-201812月,伟德BETVLCTOR1946始于英国bevictor伟德官网,讲师

20191-202112月,伟德BETVLCTOR1946始于英国bevictor伟德官网,副教授;

20221-至今,伟德BETVLCTOR1946始于英国bevictor伟德官网,教授

 

 

主要研究方向:

生物质基功能材料,木材功能性改良,智能仿生材料。

 

社会兼职:

1. 国际VEBLEO学会会士(Fellow)

2. 国家自然基金通讯评审专家;

3. SCI期刊Front. Mater.客座主编;

4. SCI期刊Curr. Org. Synth.编委;

5. 中文核心期刊J. Leath. Sci. Eng.编委。

 

科研情况:

以第一作者/通讯作者在Adv. Energy Mater.IF= 29.698)、Adv. Funct. Mater.IF= 19.924)、Chem. Eng. J.IF= 16.744)、J. Energy Chem.IF= 13.599)等SCI期刊上发表论文60 余篇,8 项成果被推荐作为封面论文报导。主持出版科学出版社专著2 部,参编国内专著、教材4 部,参编ElsevierWiley等国际出版社专著2 部。以第一发明人授权国际专利1 件、国家发明专利4 件,正在申请发明专利4 件。入选国家万人计划青年拔尖人才、国际VEBLEO学会会士(Fellow)、中国科协青年托举工程、国家林草创新青年拔尖人才、湖南省湖湘青年英才、中国科协科创中国平台入库专家等,主持国家自然科学基金青年项目、湖南省自然科学基金面上项目等,获国际先进材料学会(IAAMAdvanced Materials Award奖、梁希林业科技奖自然科学一等奖、梁希优秀青年论文奖一等奖等。担任SCI期刊GelsFront. Mater.客座主编(Guest Editor),担任中文核心期刊J. Leath. Sci. Eng.编委、《林业工程学报》青年编委等。指导研究生获省挑战杯金奖、省芙蓉学子奖、国家奖学金、国家级创新项目立项等。

 

代表性学术成果:

1)学术论文:

[1] Tian W, Wan C,* Yong K T, et al. Learning from nature: constructing a smart bionic structure for highperformance glucose sensing in human serums [J]. Advanced Functional Materials, 2022, 32(1): 2106958.

[2] Wei S, Wan C,* Zhang L, et al. N-doped and oxygen vacancy-rich NiCo2O4 nanograss for supercapacitor electrode [J]. Chemical Engineering Journal, 2022, 429: 132242.

[3] Wei S, Wan C,* Li X, et al. Constructing N-doped and 3D Hierarchical Porous graphene nanofoam by plasma activation for supercapacitor and Zn ion capacitor [J]. Iscience, 2023, 26(2): 105964.

[4] Su J, Zhang L, Wan C,* et al. Dual-network self-healing hydrogels composed of graphene oxide@ nanocellulose and poly(AAm-co-AAc) [J]. Carbohydrate Polymers, 2022, 296: 119905.

[5] Zhang L, Wan C,* Su J, et al. A dual-crosslinked self-healing and antibacterial nanocellulose hydrogel for monitoring of human motions [J]. Materials & Design, 2022, 215: 110464.

[6] Wan C, Zhang L, Yong K T, et al. Recent progress in flexible nanocellulosic structures for wearable piezoresistive strain sensors [J]. Journal of Materials Chemistry C, 2021, 9(34): 11001-11029.

[7] Liu X, Wan C,* Li X, et al. Sustainable wood-based nanotechnologies for photocatalytic degradation of organic contaminants in aquatic environment [J]. Frontiers of Environmental Science & Engineering, 2021, 15: 54.

[8] Wan C, Jiao Y, Tian W, et al. A holocellulose framework with anisotropic microchannels for directional assembly of copper sulphide nanoparticles for multifunctional applications [J]. Chemical Engineering Journal, 2020, 393: 124637.

[9] Wan C, Jiao Y, Li X, et al. A multi-dimensional and level-by-level assembly strategy for constructing flexible and sandwich-type nanoheterostructures for high-performance electromagnetic interference shielding [J]. Nanoscale, 2020, 12(5): 3308-3316.

[10] Wan C, Jiao Y, Wei S, et al. A scalable top-to-bottom design on low tortuosity of anisotropic carbon aerogels for fast and reusable passive capillary absorption and separation of organic leakages [J]. ACS Applied Materials & Interfaces, 2019, 11(51): 47846-47857.

[11] Wan C, Jiao Y, Liang D, et al. A geologic architecture system-inspired micro-/nano-heterostructure design for high-performance energy storage [J]. Advanced Energy Materials, 2018, 8(33): 1802388.

[12] Wan C, Jiao Y, Li J. A cellulose fibers-supported hierarchical forest-like cuprous oxide/copper array architecture as a flexible and free-standing electrode for symmetric supercapacitors [J]. Journal of Materials Chemistry A, 2017, 5, 17267-17278.

[13] Wan C, Jiao Y, Li J. Flexible, highly conductive, and free-standing reduced graphene oxide/polypyrrole/cellulose hybrid papers for supercapacitor electrodes [J]. Journal of Materials Chemistry A, 2017, 5, 3819-3831.

[14] Wan C, Jiao Y, Li J. Multilayer core–shell structured composite paper electrode consisting of copper, cuprous oxide and graphite assembled on cellulose fibers for asymmetric supercapacitors [J]. Journal of Power Sources, 2017, 361: 122-132.

[15] Wan C, Jiao Y, Qiang T, et al. Cellulose-derived carbon aerogels supported goethite (α-FeOOH) nanoneedles and nanoflowers for electromagnetic interference shielding [J]. Carbohydrate Polymers, 2017, 156: 427-434. (影响因子7.182)

 

2)发明专利:

1. 万才超;魏松;吴义强等.一种基于二硒化钼/木炭的非对称超级电容器的制备方法.专利号:ZL201910679107.6

2. 万才超;吴义强;李坚等.一种基于碳纤维织物、金属镍纳米颗粒和石墨烯的夹层式柔性电磁屏蔽材料的制备方法.申请号:ZL201910657184.1

3. 万才超;张陆雨;吴义强等.一种纳米纤维素/丙烯酰胺/氧化石墨烯自愈合水凝胶的制备方法.申请号ZL202011156568.4

4. 万才超;张陆雨;吴义强等.一种纳米纤维素/硼砂/聚乙烯醇自愈合水凝胶的制备方法.申请号ZL201910973823.5

5. 李坚;万才超;包文慧等.一种基于碳材料、聚吡咯和α-三氧化二铁三种成分的电磁屏蔽材料的制备方法.专利号:ZL201610990084.7

6. 李坚;万才超.一种提高纤维素气凝胶的力学强度的方法.专利号ZL201610560600.2

7. 李坚;万才超;孙庆丰等.一种超轻、疏水、高吸油率的纳米纤丝化纤维素气凝胶的制备方法.专利号:ZL 201410024893.3

 

3)专著:

1. 万才超, 吴义强, 李坚. 生物质基超级电容器电极材料——设计、制备和应用基础[M]. 北京: 科学出版社, 2021.

2. 万才超. 绿色纤维素基电磁屏蔽材料[M]. 北京: 科学出版社, 2023.