副教授

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肖志东

发布时间:2015-05-12  作者:  浏览次数:

 

肖志东,中共党员,湖南衡阳人。理学博士,副教授,硕士研究生导师,中国化学学会会员。Nanotechnology, Advanced Functional Materials, Small, Materials Letter等学术期刊的稿件审稿人(Manuscript Reviewer)。

研究领域:我的实验室主要开展纳米生物分析材料与器件设计应用研究。包括:1.复杂纳米结构材料的化学可控合成和材料体系的物化性能研究。重点针对多孔性功能材料的可控制备以及该类材料体系在生物医药(微纳米载药胶囊、疫苗佐剂、纳米抗菌剂)领域的应用基础研究。2.研究方向包括:发展复杂纳米结构的可控合成技术,探讨功能性纳米材料结构形貌演化规律,揭示相关纳米材料的生长机制,研究相关产物的物性及潜在应用(新型纳米佐剂、纳米载药胶囊、高效纳米抗菌剂开发应用)。We synthesize nanomaterials and study their fundamental chemistry, photochemistry, electrochemistry, optical, and biomaterials properties. Our emphasis is on the development of biocompatible materials from natural and synthetic polymers, porous nanostructures. Research topics include drug delivery materials, next generation adjuvant for vaccine deliveryin-vivo imaging with luminescent or magnetic nanoparticles, batteries, and chemical or biochemical sensors.

硕士培养:肖志东博士研究组与美国弗吉尼亚大学、清华大学、中科院化学研究所、中国科学技术大学、中科院宁波材料技术与工程研究所、中科院苏州纳米技术与纳米仿生研究所、中科院合肥物质科学研究院、苏州大学等著名研究院所的相关研究团队有紧密的学术合作,指导的学生有机会去上述研究机构开展研修交流。欢迎具有物理、化学、生物及材料等学科背景,崇尚学术研究生活方式,有学术追求激情的本科生报考我实验室的研究生。

联系方式027-87286893 E-mailzdxiao @ mail.hzau.edu.cn

个人网页https://www.researchgate.net/profile/Zhidong_Xiao2

http://dwz.cn/7YUkfp

研究项目:先后主持教育部博士点基金、湖北省自然科学基金、中央高校基本科研业务费专项资金项目等。参与农业部公益性行业(农业)专项等课题。

教学情况:为本科生和研究生讲授无机及分析化学、基础化学实验、材料化学、功能材料、仪器分析、化学研究进展等课程。

获奖情况:先后获得原冶金工业部科技进步二等奖;教学优秀奖;校级青年教师讲课比赛三等奖;本科生毕业论文设计优秀指导教师奖;校级优秀班主任;教学质量奖;湖北省优秀学士论文指导奖;华中农业大学研究生导师教书育人奖;华中农业大学硕士研究生优秀论文指导奖等。

学术成果:在国际知名学术刊物发表SCI论文20余篇,指导硕士研究生发表正封面论文(Cover image paper)。参编专著1部,获国家发明专利授权1项。

志东博士SCI学术论文清单

1. Yuan, C; Deng, Y.; Li, X.; Li, C.; Xiao, Z*.; Liu, Z., Synthesis of Monodisperse Plasmonic Magnetic Microbeads and Their Application in Ultrasensitive Detection of Biomolecules. Analytical Chemistry 2018, 90, 8178-8187.(IF: 6.042)

2. Song, L.; Zhang, L.; Huang, Y.; Chen, L.; Zhang, G.; Shen, Z.; Zhang, J.; Xiao, Z*.; Chen, T., Amplifying the signal of localized surface plasmon resonance sensing for the sensitive detection of Escherichia coli O157:H7. Scientific Reports 2017, 7. DOI: 10.1038/s41598-017-03495-1. (IF: 4.122)

3. Chen, L.; Song, L.; Zhang, Y.; Wang, P.; Xiao, Z.*; Guo, Y.; Cao, F., Nitrogen and Sulfur Codoped Reduced Graphene Oxide as a General Platform for Rapid and Sensitive Fluorescent Detection of Biological Species. Acs Applied Materials & Interfaces 2016, 8 (18), 11255-11261. (IF: 8.097)

4. Hu, Y.; Huang, S.; Zheng, X.; Cao, F.; Yu, T.; Zhang, G.; Xiao, Z.; Liang, J.; Zhang, Y., Synthesis of core-shell structured Ag3PO4@benzoxazine soft gel nanocomposites and their photocatalytic performance. Rsc Advances 2016, 6 (67), 62244-62251. (IF: 2.936)

5. Huang, S.; Song, L.; Xiao, Z*.; Hu, Y.; Peng, M.; Li, J.; Zheng, X.; Wu, B.; Yuan, C., Graphene quantum dot-decorated mesoporous silica nanoparticles for high aspirin loading capacity and its pH-triggered release. Analytical Methods 2016, 8 (12), 2561-2567.Front Cover Image Paper(IF :2.073)

6. Zhang, G.; Lu, W.; Cao, F.; Xiao, Z.; Zheng, X., N-doped graphene coupled with Co nanoparticles as an efficient electrocatalyst for oxygen reduction in alkaline media. Journal of Power Sources 2016, 302, 114-125.(IF: 6.945)

7. Li, Y.; Wen, S.; Chen, Z.; Xiao, Z.; Ma, M., Ultra-high performance liquid chromatography tandem mass spectrometry for simultaneous analysis of aflatoxins B1, G1, B2, G2, zearalenone and its metabolites in eggs using a QuEChERS-based extraction procedure. Analytical Methods 2015, 7 (10), 4145-4151. (IF :2.073)

8. Peng, M.; Xiao, P.; Huang, Y.; Cai, M.; Hou, Y.; Chen, J.; Liu, Z.; Xiao, Z*.; Chen, T., A direct microcontact printing induced supramolecular interaction for creating shape-tunable patterned polymeric surfaces. Journal of Materials Chemistry C 2015, 3 (33), 8659-8664.(IF: 5.976)

9. Wu, Y.; Wang, H.; Cao, M.; Zhang, Y.; Cao, F.; Zheng, X.; Hu, J.; Dong, J.; Xiao, Z., Animal Bone Supported SnO2 as Recyclable Photocatalyst for Degradation of Rhodamine B Dye. Journal of Nanoscience and Nanotechnology 2015, 15 (9), 6495-6502. (IF: 1.354)

10. Huang, X.; Guan, J.; Xiao, Z.; Tong, G.; Mou, F.; Fan, X. a., Flower-like porous hematite nanoarchitectures achieved by complexation-mediated oxidation-hydrolysis reaction. Journal of Colloid and Interface Science 2011, 357 (1), 36-45.(IF: 5.091)

11. Mou, F.; Guan, J.; Xiao, Z.; Sun, Z.; Shi, W.; Fan, X.-a., Solvent-mediated synthesis of magnetic Fe2O3 chestnut-like amorphous-core/gamma-phase-shell hierarchical nanostructures with strong As(V) removal capability. Journal of Materials Chemistry 2011, 21 (14), 5414-5421.(IF: 9.931)

12. Zhang, Q.; Xiao, Z.; Feng, X.; Tan, W.; Qiu, G.; Liu, F., alpha-MnO2 nanowires transformed from precursor delta-MnO2 by refluxing under ambient pressure: The key role of pH and growth mechanism. Materials Chemistry and Physics 2011, 125 (3), 678-685.(IF: 2.210)

13. Liu, Y.; Guan, J.; Xiao, Z.; Sun, Z.; Ma, H., Chromium doped barium titanyl oxalate nano-sandwich particles: A facile synthesis and structure enhanced electrorheological properties. Materials Chemistry and Physics 2010, 122 (1), 73-78.(IF:2.210)

14. Tong, G.; Guan, J.; Xiao, Z.; Huang, X.; Guan, Y., In situ generated gas bubble-assisted modulation of the morphologies, photocatalytic, and magnetic properties of ferric oxide nanostructures synthesized by thermal decomposition of iron nitrate. Journal of Nanoparticle Research 2010, 12 (8), 3025-3037.(IF: 2.127)

15. Xie, J.; Zheng, X.; Dong, A.; Xiao, Z.; Zhang, J., Biont shell catalyst for biodiesel production. Green Chemistry 2009, 11 (3), 355-364.(IF: 8.586)

16. Fang, M.; Wang, H.; Tan, X.; Cheng, B.; Zhang, L.; Xiao, Z., One-dimensional hollow SrS nanostructure with red long-lasting phosphorescence. Journal of Alloys and Compounds 2008, 457 (1-2), 413-416.(IF: 3.779)

17. Tong, G.; Guan, J.; Xiao, Z.; Mou, F.; Wang, W.; Yan, G., In situ generated H-2 bubble-engaged assembly: A one-step approach for shape-controlled growth of Fe nanostructures. Chemistry of Materials 2008, 20 (10), 3535-3539.(IF: 9.890)

18. Xiao, Z.; Zhang, L.; Wang, Z.; Lu, Q.; Tian, X.; Zeng, H., Low-temperature synthesis and structural characterization of single-crystalline tungsten oxide nanorods. Materials Letters 2007, 61 (8-9), 1718-1721.(IF: 2.687)

19. Tian, X.; Fei, J.; Pi, Z.; Yang, C.; Xiao, Z.; Zhang, L., Large-scale synthesis of a novel tri(8-hydroxyquioline) aluminum nanostructure. Journal of Nanoscience and Nanotechnology 2006, 6 (8), 2580-2583. (IF: 1.345)

20. Xiao, Z.*; Zhang, L.; Meng, G.; Tian, X.; Zeng, H.; Fang, M., High-density, aligned SiO2 nanowire arrays: Microscopic imaging of the unique growth style and their ultraviolet light emission properties. Journal of Physical Chemistry B 2006, 110 (32), 15724-15728.(IF: 3.146)

21. Fang, X.; Ye, C.; Zhang, L.; Li, Y.; Xiao, Z., Formation and optical properties of thin and wide tin-doped ZnO nanobelts. Chemistry Letters 2005, 34 (3), 436-437.(IF: 1.625)

22. Wang, Z.; Zhang, L.; Ye, C.; Fang, X.; Xiao, Z.; Kong, M., Single-crystal CdSe nanowires prepared via vapor-phase growth assisted with silicon. Journal of Nanoscience and Nanotechnology 2005, 5 (12), 2088-2092. (IF: 1.354)

23. Xiao, Z.*; Zhang, L.; Tian, X.; Fang, X., Fabrication and structural characterization of porous tungsten oxide nanowires. Nanotechnology 2005, 16 (11), 2647-2650. (Highlighted by Small, 2005, 1, 1145) (IF: 3.404)

 

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