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毕业院校 |
华中科技大学 |
专业学历 |
微生物学 博士 |
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shizhijun@hust.edu.cn |
手 机 |
13437255406 |
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出生日期 |
1985年1月 |
婚姻状况 |
已婚 |
已发表论文23篇,其中第一作者论文14篇,通讯作者2篇,影响因子十以上1篇,影响因子五以上7篇,包括Biomaterials 1篇,Nanoscale 3篇,ACS Sustainable Chemistry & Engineering 1篇, Food Hydrocolloids 1篇,其中Food Hydrocolloids, 2014,35:539-545 为热点论文。撰写书稿章节1章。申请国家专利6项,已获得3项授权。主持国家自然科学基金青年基金1项,博士后基金1项,参与国家自然科学基金面上项目2项(排名第2)。 教育及工作背景 |
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2019.09-至今 |
华中科技大学生命科学与技术学院,生物医学工程系 副研究员 ● 研究方向: 1 基于微生物的可控生物制造; 2 细菌纤维素水凝胶力学性能评价、仿真与有序微结构诱导; 3 基于细菌纤维素的导电水凝胶; 4 可发电水凝胶的机理研究与生物医学应用探索。 |
2014.03-2019.9 |
华中科技大学生命科学与技术学院,生物医学工程系 博士后 ● 研究方向: 功能化水凝胶的生物制造 |
2008.09-2014.03 |
华中科技大学,生命科学与技术学院 微生物学 博士 导师:杨光 ● 硕博连读,研究方向:基于细菌纤维素的电活性水凝胶制备、表征及应用 |
2013.06-2013.11 |
英国拉夫堡大学,Wolfson机械工程学院 联合培养 导师:Changqing Liu |
2004.09-2008.06 |
华中科技大学,生命科学与技术学院 生物技术 学士 |
发表论文及专利 |
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1) Sixiang Li#, Ashwak Jasim#, Weiwei Zhao, Lina Fu, Muhammad Wajid Ullah*, Zhijun Shi*, Guang Yang*, Fabrication of pH-electroactive Bacterial Cellulose/Polyaniline Hydrogel for the Development of a Controlled Drug Release System, ES Materials & Manufacturing, 2018, 1, 41–49.(共同通讯) 2) Sanming Hu#, Zhijun Shi#, Weiwei Zhao*, Li Wang, Guang Yang*, Multifunctional piezoelectric elastomer composites for smart biomedical or wearable electronics, Composites Part B: Engineering, 2018, https://doi.org/10.1016/j.compositesb.2018.12.077 (共同一作) 3) Weiwei Zhao#, Zhijun Shi#, Sanming Hu, Guang Yang*, Huifang Tian*, Understanding Piezoelectric Characteristics of PHEMA-based Hydrogel Nanocomposites as Soft Self-Powered Electronics, Advanced Composites and Hybrid Materials, 2018, 1, 320-331. (共同一作) 4) Zhijun Shi#, Xudian Shi#, Muhammad Wajid Ullah, Sixiang Li, Victor V. Revin, Guang Yang*, Fabrication of nanocomposites and hybrid materials using microbial biotemplates. Advanced Composites and Hybrid Materials, 2018,1, 79-93. (共同一作) 5) Muhammad Wajid Ullah#, Zhijun Shi#, Xudian Shi, Di Zeng, Sixiang Li, Guang Yang, Microbes as Structural Templates in Biofabrication: Study of Surface Chemistry and Applications, ACS Sustainable Chemistry & Engineering, 2017, 5(12): 11163-11175. (共同一作) 6) Zhijun Shi, Weiwei Zhao*, Sixiang Li, and Guang Yang*, Self-Powered Hydrogel Induced by Ion Transport, Nanoscale, 2017,9, 17080-17090. 7) Zeng Di#, Zhijun Shi#, Muhammad Wajid Ullah, Sixiang Li, Guang Yang*, A transparent wound dressing based on bacterial cellulose whiskerand poly(2-hydroxyethyl methacrylate), International Journal of Biological Macromolecules, 2017, 105, 638-644. (共同一作) 8) Xing Gao, Emrah Sozumert, Zhijun Shi*, Guang Yang, Vadim V. Silberschmidt*, Assessing stiffness of nanofibres in bacterial cellulose hydrogels: Numerical-experimental framework. Materials Science and Engineering C 77 (2017) 9–18. (共同通讯) 9) Zhijun Shi#, Xing Gao#, Muhammad Wajid Ullah, Sixiang Li, Qun Wang*, Guang Yang*. Electroconductive natural polymer-based hydrogels. Biomaterials, 2016, 111, 40–54. (共同一作) 10) Xudian Shi#, Zhijun Shi#, Daming Wang, Muhammad Wajid Ullah, Guang Yang*. Microbial Cells with a Fe3O4 Doped Hydrogel Extracellular Matrix: Manipulation of Living Cells by Magnetic Stimulus. Macromolecular Bioscience, 2016, 16, 1506−1514.(共同一作) 11) Xing Gao#, Zhijun Shi#, Andrew Laua, Changqin Liua, Guang Yang, Vadim V. Silberschmidta*. Effect of microstructure on anomalous strain-rate-dependent behaviour of bacterial cellulose hydrogel. Materials Science and Engineering: C, 2016, 62:130-136.(共同一作) 12) Zhijun Shi, Ying Li, Xiuli Chen, Hongwei Han, Guang Yang*. Double network bacterial cellulose hydrogel to build a biology–device interface. Nanoscale, 2014,6(2):970-977. 13) Zhijun Shi, Yue Zhang, Glyn O. Phillips, Guang Yang*. Utilization Of Bacterial Cellulose In Food. Food Hydrocolloids, 2014,35:539-545.(高被引论文) 14) Zhijun Shi, Glyn O. Phillips, Guang Yang*. Nanocellulose electroconductive composites. Nanoscale, 2013,5(8):3194-3201. 15) 石志军, 史续典, 孙臻, 杨光*. 微生物微纳米生物制造的前沿与展望. 生物工程学报, 2013,29(2):131-140。 16) Zhijun Shi, Shanshan Zang, Fan Jiang, Long Huang, Dan Lu, Yuguang Ma, Guang Yang*. In situ nano-assembly of bacterial cellulose–polyaniline composites. RSC Advances, 2012, 2(3):1040-1046. 17) Ashwak Jasim, Muhammad Wajid Ullah1, Zhijun Shi, Xiao Lin, Guang Yang*. Fabrication of bacterial cellulose/polyaniline/single-walled carbon nanotubes membrane for potential application as biosensor. Carbohydrate Polymers, 2017, 163:62-69. 18) Xing Gao, Zhijun Shi, Changqing Liua, Guang Yang, Vadim V Silberschmidta*. Fracture Behaviour of Bacterial Cellulose Hydrogel: Microstructural Effect. Procedia Structural Integrity, 2016, 2: 1237-1243. 19) Xing Gao, Zhijun Shi, Piotr Kuśmierczyk, Changqing Liu, Guang Yang, Igor Sevostianov, Vadim V. Silberschmidt*. Time-dependent rheological behaviour of bacterial cellulose hydrogel. Materials Science and Engineering: C, 2016,58:153-159. 20) Weiwei Zhao, Zhijun Shi, Xiuli Chen, Guang Yang, Cristina Lenardi, Changqing Liu*. Microstructural and mechanical characteristics of PHEMA-based nanofibre-reinforced hydrogel under compression. Composites Part B: Engineering, 2015,76:292-299. 21) Xing Gao, Zhijun Shi, Changqing Liu, Guang Yang, Igor Sevostianov, Vadim V. Silberschmidt*. Inelastic behaviour of bacterial cellulose hydrogel: In aqua cyclic tests. Polymer Testing, 2015,44:82-92. 22) Xing Gao, Piotr Kuśmierczyk, Zhijun Shi, Changqing Liu, Guang Yang, Igor Sevostianov, Vadim V. Silberschmidt*. Through-thickness stress relaxation in bacterial cellulose hydrogel. Journal of the Mechanical Behavior of Biomedical Materials, 2016: 90-98. 23) Yi Bu, Minglei Cao, Youyu Jiang, Lin Gao, Zhijun Shi, Xin Xiao, Mingkui Wang,Guang Yang, Yinhua Zhou, Yan Shen*, Ultra-thin bacterial cellulose/poly(ethylenedioxythiophene) nanofibers paper electrodes for all-solid-state flexible supercapacitors, Electrochimica Acta, 2018, 271: 624-631. 1) Zhijun Shi, Lin Mao, Muhammad Wajid Ullah, Sixiang Li, Li Wang, Sanming Hu, and Guang Yang*, Chapter 7: Electroconductive Bioscaffolds for 2D and 3D Cell Culture, Bioinspired Materials Science and Engineering, ISBN: 978-1-119-39035-0, John Wiley and Sons Ltd, 2018.7.30. 专利 1) 杨光,李晓宏,石志军,一种再生细菌纤维素微球及制备方法与应用,专利号:201810264366.8 2) 杨光; 石志军; 郑瑞珠; 刘凯; 武严严; 候全飞; 杨子玺; 龙开鑫; 滕贷宇,一种包装饮品的纤维素凝胶及其制备方法,专利号:201711358421.1 授权日:20190723 3) 杨光,曾迪,石志军,一种透明抗菌水凝胶敷料及其制备方法和应用。专利号:201611227020.8 4) 杨光,石志军,蔡欣宇,廖雅文,周学思,刘佳彤,张海祥,一种皮肤敷料及其制备方法,专利号:201610259364.0 授权日:20180726 5) 杨光,石志军,赵维玮,李思祥,一种压电凝胶及其制备方法与应用,专利号:201510870067.5授权日:20180428 6) 杨光,石志军,臧珊珊,一种基于细菌纤维素的柔性显示材料,专利号:201110092376.6授权日:20121010 |
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主持及参与研究项目 |
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1) 国家自然科学基金青年项目 “可发电水凝胶的机理研究与生物医学应用探索”,2017/01-2019/12, 批准号:51603079,经费:21万,2017.04-2019.12,主持。 2) 双相电活性水凝胶构筑生物-电学界面,中国博士后科学基金面上资助二等。资助编号:2015M572131, 经费:5万,2015.03-2016.03,主持 3) 国家自然科学基金面上项目“基于微生物多层次调控的生物智造及生物功能材料的组装机制研究”,2020/01-2023/12,项目批准号:51973076,经费:61万,参与 (排名第二) 4) 国家自然科学基金面上项目“电活性有序微纳界面诱导皮肤组织修复的机理研究”,2016/01-2019/12,项目批准号:21574050,经费:65万,参与 (排名第二) 5) 华中科技大学自主创新研究基金(国际科技合作项目),“发展基于电活性水凝胶的柔性可移植医学器件”,批准号:2014XJGH009,经费:10万, 2014.04-2015.12, 参与(排名第二) 6) 国家自然科学基金面上项目“具有调控细胞黏附与生长的细菌纤维素复合材料的微纳米构筑”,项目批准号:21074041,2011.01-2013.12,参与(排名第四) |
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