个人简介
基本资料:
黄晓卫,女,工学博士,青年卓越
工作经历(教育背景)
2006.9-2010.6南通大学学士纺织工程专业;
2010.9-2015.6苏州大学博士纺织材料与纺织品设计专业;
2015.10-2018.5福州大学化学学院博士后;
2018.10-至今青岛大学纺织服装学院
教学工作:
科研项目:
通过3D打印构建具有自主修复能力的仿生骨组织修复材料,国家自然科学基金(51603041),2017.01-2019.12,主持
研究领域
研究方向(研究兴趣):
1、丝蛋白材料改性
2、功能高分子生物材料
3、功能纺织品柔性可穿戴电子器件
近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
近5年代表性成果:
1.HuangXiaowei,WeiJingjing,ZhangMengya,ZhangXueliang,YinXiaofei,LuChunhua,SongJibin,BaiShumeng,YangHuanghao.Water-basedblackphosphorushybridnanosheetsasamoldableplatformforwoundhealingapplications.ACSAppliedMaterials&Interfaces.2018,10,35495-35502.
2.HuangXiaowei,WeiJingjing,LiuTong,ZhangXueliang,BaiShumeng,YangHuanghao.Silkfibroin-assistedexfoliationandfunctionalizationoftransitionmetaldichalcogenidesnanosheetsforantibacterialwounddressings.Nanoscale.2017,9,17193-17198.
3.HuangXiaowei,LiangHong,LiZhi,ZhouJie,ChenXian,BaiShumeng,YangHuanghao.Monodispersephasetransferandsurfacebioengineeringofmetalnanoparticlesviaasilkfibroinproteincorona.Nanoscale.2017,9,2695-2700.
4.HuangXiaowei,BaiShumeng,LuQiang,LiuXi,LiuShanshan,ZhuHesun.Osteoinductive-nanoscaledsilk/HAcompositescaffoldsforbonetissueengineeringapplication.JournalofBiomedicalMaterialsResearchPartB:AppliedBiomaterials.2015,103B:1402-1414.
5.HuangXiaowei,LiuXi,LiuShanshan,ZhangAili,LuQiang,KaplanL.David,ZhuHesun.Biomineralizationregulationbynano-sizedfeaturesinsilkfibroinproteins:synthesisofwater-dispersiblenano-hydroxyapatite.JournalofBiomedicalMaterialsResearchPartB:AppliedBiomaterials.2014,102:1720-1729.
6.DingZhaozhao,FanZhihai,HuangXiaowei(共同第一作者),BaiShumeng,SongDawei,LuQiang,KaplanL.David.Bioactivenaturalprotein-hydroxyapatitenanocarriersforoptimizingosteogenicdifferentiationofmesenchymalstemcells.JournalofMaterialsChemistryB.2016,4:3555-3561.
7.DingZhaozhao,FanZhihai,HuangXiaowei,LuQiang,XuWeian,KaplanL.David.Silk-Hydroxyapatitenanoscalescaffoldswithprogrammablegrowthfactordeliveryforbonerepair.ACSAppliedMaterials&Interfaces.2016,8:24463-24470.
8.BaiShumeng,HanHongyan,HuangXiaowei,XuWeian,DavidL.Kaplan,ZhuHesun,LuQiang.Silkscaffoldswithtunablemechanicalcapabilityforcelldifferentiation.ActaBiomaterialia.2015,20:22-31.