冯骁斌-亚博888

亚博888

冯骁斌

更新时间:2023-09-21

姓名:冯骁斌

性别:男

出生年月:19939

职称/职务:特任副研究员

学位/学历:博士/研究生

/博生导师:

亚博888的联系方式:fengxb@whut.edu.cn

研究方向:新型功能/结构材料(包括热电半导体、高熵合金、力学超材料等)微纳米力学行为

教育背景与工作经历:

2018.07-2021.07 香港城市大学,机械工程,博士

2015.09-2018.06 西安交通大学,材料科学与工程,硕士

2011.09-2015.06 武汉理工大学,材料科学与工程,学士

2021.09-2022.06 武汉理工大学,理学院,助理研究员

2022.06- 武汉理工大学,理学院,特任副研究员

主要教学科研成果:

专注于新型功能/结构材料(包括热电半导体、高熵合金、力学超材料等)微纳米尺度下的力学行为研究,采用原位微纳米力学表征技术揭示新型功能/结构材料微观力学行为及强韧化机制,为新一代轻质高强柔性微器件设计提供依据。以(共同)第一作者或通讯作者在nature communications, materials today, advanced materials, international journal of plasticity, journal of materials science & technology等期刊上发表论文20余篇,论文共被引用1100 余次,h因子15

代表性论文如下(备注:共同第一作者#,通讯作者*):

1. x.b. feng#, j.u. surjadi#, r. fan, x.c. li, w.z. zhou, s.j. zhao, y. lu*, microalloyed medium-entropy alloy (mea) composite nanolattices with ultrahigh toughness and cyclability. materials today 42 (2021) 10.

2. n. zhang#, x.b. feng#, d.w. rao#, x. deng, l.j. cai, b.c. qiu, r. long, y.j. xiong, y. lu*, y. chai*, lattice oxygen activation enabled by high-valence metal sites for enhanced water oxidation. nature communications 11 (2020) 4066.

3. h.t. wang#, x.b. feng#, z.t. lu#,b. duan*, h.j. yang, l.q. wu, l. zhou, p.c. zhai, g. snyder, g.d. li*, q.j. zhang,synergetic enhancement of strength–ductility and thermoelectric properties of ag2te by domain boundaries. advanced materials 35 (2023)2302969.

4. x.b. feng, j.y. zhang*, y.q wang, z.q. hou, k. wu, g. liu*, j. sun*, size effects on the mechanical properties of nanocrystalline nbmotaw refractory high entropy alloy thin films. international journal of plasticity 95 (2017) 264.

5. h.j. yang, x.g. huang, b. duan*, l.q. wu, h.t. wang, x.b. feng*, m.y. jiang, g.d. li, l. zhou, p.c. zhai, q.j. zhang, dense dislocations induced ductile snte thermoelectric semiconductor over a wide range of temperatures. journal of materials science & technology 144 (2023) 213.

6. x.b. feng, j.y. zhang*, k. wu, x.q. liang, g. liu*, j. sun*, ultrastrong al0.1cocrfeni high-entropy alloys at small scales: effects of stacking faults vs. nanotwins. nanoscale 10 (2018) 13329.

7. x.b. feng, w. fu, j.y. zhang*, j.t. zhao, j. li, k. wu, g. liu*, j. sun*, effects of nanotwins on the mechanical properties of alxcocrfeni high entropy alloy thin films. scripta materialia 139 (2017) 71.

8. x.b. feng#, h.k. yang#, r. fan#, w.q. zhang#, f.l. meng, b. gan*, y. lu*, heavily twinned cocrni medium-entropy alloy with superior strength and crack resistance. materials science and engineering: a 788 (2020) 139591.

9. x.b. feng, j.u. surjadi, x.c. li, y. lu*, size dependency in stacking fault-mediated ultrahard high-entropy alloy thin films. journal of alloys and compounds 844 (2020) 156187.

10. s.f. fan#, x.b. feng#, y. han#, z.j. fan, y lu*, nanomechanics of low-dimensional materials for functional applications. nanoscale horizons 4 (2019) 781.

主要科研项目:

1. 湖北省自然科学基金青年项目,2023-2025(主持)

2. 武汉英才优秀青年人才项目,2023-2024(主持)

3. 中央高校基本科研业务费,2021-2022(主持)

学术兼职:crystalsfrontiers in materials期刊客座编辑,nanoscalesurface & coatings technologyfrontiers in materialsphysica status solidi a等期刊审稿人。




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