教授
杨武霖,教授,博士生导师。主要致力于热管理复合材料及功能薄膜材料的研究。在功能复合材料的制备、表征和性能优化方面积累了丰富的研究经验,在复合材料界面构筑与性能调控方面研究特色鲜明,研究成果受到国内外研究同行的广泛关注。主持国家自然科学基金及其它国家项目多项。
联系方式:wlyang@hnu.edu.cn
2025年9月至今,湖南大学材料科学与工程学院,教授
2020年1月-2025年9月,湖南大学材料科学与工程学院,副教授
2015年9月-2019年12月,湖南大学材料科学与工程学院,助理研究员/助理教授
2008年9月-2015年6月,湖南大学,材料科学与工程,工学博士
2004年9月-2008年6月,武汉科技大学,无机非金属材料,工学学士
[1]XXX电极材料工程化研制,国家项目,2022-2024,主持,在研。
[2]高导热金刚石-陶瓷界面耦合及柔性网络构筑,国防科技重点实验室基金,2020-2022,主持,结题。
[3]金刚石复合材料有序微纳结构界面构筑及其高导热机制,国家自然科学基金青年项目,2019-2021,主持,结题。
[4]氮化硼/碳化硅微纳“蜂窝”构筑及其聚合物基复合材料高效导热增益机理,湖南省自然科学基金面上项目,2021-2023,主持,结题。
[5]热沉用金刚石-铜复合材料制备技术开发,横向,2024-2026,主持,在研。
发表论文:
[1]J.Sang,W.Yang*,H.Chen,Q.Luo,J.Huang,J.Zhu,L.Zhou,Metallurgical behaviors of tungsten coatings at diamond/Al interface and its influence on thermal conductivity and stability of diamond/Al composites,Journal of Alloys and Compounds,1221(2025)179539
[2]H.Huang,W.Yang*,J.Zhu,L.Fu,L.Zhou,A graphite/copper composite with high thermal conductivity and low secondary electron yield for collector applications,Journal of Materials Science-Materials in Electronics,36(2025)993
[3]H.Liu,J.Hu,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Honeycomb networks of boron nitride/nanodiamond with interlocking interfaces enhance the application reliability of silicone rubber thermal conductivity composites,Polymer Composites,45(2024)
[4]X.Du,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Aligning diamond particles inside BN honeycomb for significantly improving thermal conductivity of epoxy composite,Composites Science and Technology,222(2022)109370
[5]J.Sang,Y.Yuan,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Exploring the underlying causes of optimizing thermal conductivity of copper/diamond composites by interface thickness,Journal of Alloys and Compounds,891(2022)161777.
[6]L.Hu,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Flexible and thermal conductive poly(vinylidene fluoride)composites with silver decorated hexagonal boron nitride/silicon carbide hybrid filler,Polymer Composites,43(2022)3960-3970.
[7]Y.Yuan,W.Yang*,J.Sang,J.Zhu,L.Fu,D.Li,L.Zhou,Periodic nano ripple fabricated on diamond and its structure damage repair,Diamond&Related Materials,120(2021)108670.
[8]J.Sang,L.Zhou*,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Enhanced thermal conductivity of copper/diamond composites by fine-regulating microstructure of interfacial tungsten buffer layer,Journal of Alloys and Compounds,856(2021)157440.
[9]Q.Cheng,W.Yang*,Q.Chen,J.Zhu,L.Fu,D.Li,L.Zhou,Fe-doped zirconia nanoparticles with highly negative conduction band potential for enhancing visible light photocatalytic performance,Applied Surface Science,530(2020)147291.
[10]X.Li,W.Yang*,J.Sang,J.Zhu,L.Fu,D.Li,L.Zhou,Low-temperature synthesizing SiC on diamond surface and its improving effects on thermal conductivity and stability of diamond/Al composites,Journal of Alloys and Compounds,846(2020)156258.
[11]Q.Chen,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou*,Enhanced visible light photocatalytic activity of g-C3N4 decorated ZrO2-x nanotubes heterostructure for degradation of tetracycline hydrochloride,Journal of Hazardous Materials,384(2020)121275.
[12]J.Huang,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Silver nanoparticles decorated 3D reduced graphene oxides as hybrid filler for enhancing thermal conductivity of polystyrene composites,Composites Part A-Applied Science and Manufacturing,123(2019)79-85.
[13]Q.Chen,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou*,In situ fluorine doped ZrO2-x nanotubes for efficient visible light photocatalytic activity,Journal of Materials Science-Materials in Electronics,30(2019)701-710.
[14]H.Tang,W.Yang*,L.Fu,J.Zhu,D.Li,L.Zhou,Excellent adsorption capacity and photocatalytic regeneration of nanoparticles-assembled mesoporous Cu2O/Bi2O3 composites for removal of methyl orange,Materials Research Express,6(2019).
[15]J.Sang,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Regulating interface adhesion and enhancing thermal conductivity of diamond/copper composites by ion beam bombardment and following surface metallization pretreatment,Journal of Alloys and Compounds,740(2018)1060-1066.
[16]W.Yang*,K.Peng,J.Zhu,D.Li,Overcoming selective interfacial bonding and enhancing thermal conductivity of diamond/aluminum composite by an ion bombardment pretreatment,Diamond and Related Materials,81(2018)127-132.
[17]S.Chen,W.Yang*,J.Zhu,L.Fu,D.Li,L.Zhou,Preparation of highly-ordered lanthanum hexaboride nanotube arrays and optimizing its field emission property by ion bombardment post-treatment,Journal of Materials Science-Materials in Electronics,29(2018)10008-10015.
[18]R.Peng,W.Yang*,L.Fu,J.Zhu,D.Li,L.Zhou,Superhydrophilicity of novel anodic alumina nanofibers films and their formation mechanism,Materials Research Express,4(2017).
[19]W.Yang,K.Peng*,J.Zhu,D.Li,L.Zhou,Enhanced thermal conductivity and stability of diamond/aluminum composite by introduction of carbide interface layer,Diamond and Related Materials,46(2014)35-41.
[20]W.Yang,K.Peng*,L.Zhou,J.Zhu,D.Li,Finite element simulation and experimental investigation on thermal conductivity of diamond/aluminium composites with imperfect interface,Computational Materials Science,83(2014)375-380.
[21]W.Yang,L.Zhou*,K.Peng,J.Zhu,L.Wan,Effect of tungsten addition on thermal conductivity of graphite/copper composites,Composites Part B-Engineering,55(2013)1-4.
湖南大学-国家卓越工程师学院 版权所有
校址:湖南省长沙市岳麓区麓山南路麓山门 | 邮箱:zgxy@hnu.edu.cn | 邮编:410082
湘教QS4-201312-010059 湘ICP备09007699号

微信公众号