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西北工业大学化学与化工学院导师教师师资介绍简介-杜玉章

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基本信息 The basic information
杜玉章

化学与化工学院


博士研究生毕业

工学博士


副教授




材料科学与工程-材料物理与化学


yuzhangdu566@nwpu.edu.cn




工作经历 Work Experience

2017.03-至今 西北工业大学理学院应用化学系,从事科研教学工作



教育经历 Education Experience

2013.09-2016.12(博士)西安交通大学前沿学院,材料科学与工程专业
2010.09-2013.06(硕士)西北大学化工学院,生物化工专业
2006.09-2010.06(学士)兰州交通大学化学与生物工程学院,生物工程专业



招生信息 Admission Information
招收:材料科学与工程、化学、生物医学相关专业



科学研究 Scientific Research

研究兴趣
(1)柔性可穿戴式电子器件
(2)聚合物基多功能材料
(3)生物医用高分子材料





学术成果 Academic Achievements
科研项目
(1)国家自然科学基金青年项目,No.**,26万,2020/01-2020/12,在研,主持;
(2)陕西省博士后科研资助,No.2018BSHEDZZ109,5万,2019/01-2020/12,在研,主持;
(3)陕西省自然科学基础研究计划一般项目,No.2018JQ5021,3万,2018/01-2019/12,在研,主持;
(4)中国博士后科研资助,No.2017M623235,5万,2018/01-2019/12,在研,主持;
(5)中央高校基本科研业务费,20万,2017/01-2018/12,已结题,主持。
(6)西北工业大学分析测试中心基础研究开放测试基金,No. 2020T022, 5万,主持。
代表论文
(13) Du Y.*, Yu G., Dai X., Wang X., Yao B., Kong J.*, Highly Stretchable, Self-Healable, Ultrasensitive Strain and Proximity Sensors Based on Skin Inspired Conductive Film for Human Motion Monitoring, ACS Appl. Mater. Interfaces, 2020, 12, 46, 51987-51998 (*通信作者,2019年, IF= 8.758)

(12)Yu M.#, Du Y.#, Han Y., Lei B.*, Biomimetic Elastomeric Bioactive Siloxane-Based Hybrid Nanofibrous Scaffolds with miRNA Activation: A Joint Physico-Chemical-Biological Strategy for Promoting Bone Regeneration. Adv. Funct. Mater., 2019, **. (#共同一作)(2018年,IF=15.621)

(11)Du Y., GeJ., Li Y., Ma P. X., Lei B.*, Biomimetic elastomeric, conductive andbiodegradable polycitrate-based nanocomposites for guiding myogenicdifferentiation and skeletal muscle regeneration. Biomaterials, 2018, 157, 40-50. (2018年,IF=8.8)
(10)Du Y., YuM., Chen X., Ma P. X., Lei B.*, Development of biodegradable poly(citrate)-polyhedral oligomeric silsesquioxaneshybrid elastomers with high mechanical properties and osteogenic differentiationactivity. ACS Appl. Mater. Interfaces, 2016, 8, 3079-3091. (2018年,IF=8.456)
(9)Du Y.,Xue Y., Ma P. X., Chen X., Lei B.*, Biodegradable, elastomeric, and intrinsicallyphotoluminescent poly(Silicon-Citrates) with high photostability and biocompatibilityfor tissue regeneration and bioimaging. Adv. Healthcare Mater., 2016, 5,382–392. (2018年,IF=6.27)
(8)Du Y.,Yu M., Chen X., Ma P. X, Lei B.*, Development of a multifunctional platform basedon strong, intrinsically photoluminescent and antimicrobial silica-poly(citrates)-basedhybrid biodegradable elastomers for boneregeneration. Adv. Funct. Mater., 2015, 5, 5016-5029. (2018年,IF=15.621)
(7)Du Y.,Ge J., Shao Y., Ma P. X., Chen X.,Lei B.*, Development of silicagrafted poly(1,8-octanediolco-citrates) hybrid elastomers with highly tunable mechanicalproperties and biocompatibilityJ. Mater. Chem. B, 2015, 3,2986-3000.
(6)Du Y.,Chen X., Hag Koh Y.,Lei B.*, Facilely fabricating PCLnanofibrous scaffolds with hierarchical porestructure for tissue engineering.Mater.Lett.,2014, 122, 62-65.
(5)Ma X.#, Du Y.#, Deng J., Li X., FanD. *, A novel chitosan–collagen-based hydrogel for use as a dermal filler:initial in vitro and in vivo investigations. J. Mater. Chem. B, 2014,2, 2749-2763. (#共同一作)

(4)Xue Y., Du Y., Yan J., Liu Z., Ma P. X., ChenX.,Lei B.*, Monodisperse photoluminescentand highlybiocompatible bioactiveglass nanoparticles for controlled drug delivery and cell imaging. J.Mater. Chem. B, 2015,3, 3831-3839.
(3)Chen J., Du Y., Que W.*, Xing Y.,Lei B.*, Content-dependent biomineralization activity and mechanicalproperties based on polydimethylsiloxane–bioactive glass–poly(caprolactone)hybrids monoliths for bone tissue regeneration. RSC Adv.,2015,5,61309-61317.
(2)Chen J., Du Y., Que W. *, Xing Y., Chen X., LeiB.*, Crack-free polydimethylsiloxane–bioactiveglass–poly(ethyleneglycol) hybrid monoliths with controlled biomineralizationactivity and mechanical property forbone tissue regeneration. Colloid.Surface. B, 2015, 136,126-133.
(1)Zhao X., Wu Y., Du Y., Chen X., Lei B*, Xue Y, Ma P.X.*, A highly bioactive and biodegradable poly(glycerolsebacate)–silicaglass hybrid elastomer with tailored mechanical properties for bone tissueregeneration. J. Mater. Chem. B, 2015, 3, 3222-3233.












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