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肖卓豪
 2018/12/10 21:54:55 访问量:  

 

【个人简介】

肖卓豪,男,1978年出生于湖南隆回,工学博士、教授、硕士生导师,新加坡南洋理工大学访问学者、中组部西部之光计划访问学者,先后入选江西省杰出青年人才培养对象、江西省青年井冈学者。现任景德镇陶瓷大学材料物理系副主任,兼任中国硅酸盐学会陶瓷分会理事、中国机械工程学会材料分会工程陶瓷专业委员会理事;国家自然科学基金委、湖南省重点研发计划、江西省重点新产品计划函评专家,江西省5511工程重大专项会评专家。主要研究方向包括非晶相转变及其应用、先进玻璃与微晶玻璃材料、高性能陶瓷材料、纳米材料与二维材料、以及高端磨削用高性能磨具结合剂等。近年来主持各类科研项目15项,其中国家自然科学基金2项、省部级项目4项、市厅级项目6项、企业课题3项。作为技术骨干参与863、国家科技支撑、国际科技合作、国家自然基金、国防军工等国家级项目10余项。申请中国国家专利27项、美国PTC专利1项,已授权18项。在Nano LettersJournal of Materials Chemistry ASensors & Actuators B: ChemicalDesalinationJournal of Alloys and CompoundsCeramics InternationalJournal of Materials ScienceTOP期刊及其他国内外期刊上发表学术论文90余篇,其中SCI/EI检索60余篇;获2017年磨料磨具行业技术创新三等奖、2018年磨料磨具行业技术创新二等奖、2018年陶瓷技术创新人才奖。

Zhuohao Xiao is currently a Professor and Head of the Department of Materials Physics, Jingdezhen Ceramic Institute. He received his PhD degree at the School of Materials Science and Engineering, Central South University in 2009. He was in Nanyang Technological University as a Visitor Scholar from July 2017 to July 2018. Now he is the Director of the Ceramic Association of China Silicate Society and the Material Branch of China Mechanical Engineering Society. His research interests include advanced ceramics, nanomaterials, glass and glass-ceramics, binder for high-end grinding, glaze and ancient porcelain. He has published more than 90 journal papers in Nano Letters, Journal of Materials Chemistry A, Sensors & Actuators B: Chemical, Desalination, Journal of Alloys and Compounds, Ceramics International, Journal of Materials Science, etc. He has applied for 27 patents (including 1 PTC patent), of which 17 items have been authorized. He has received the Third Prize for Technical Innovation Award of Abrasives Industry in 2017, the Second Prize for Technical Innovation Award of Abrasives Industry in 2018 and the Innovation Talent Award of Ceramic Technology in 2018.

【联系方式】

E-mailxiaozhuohao@126.comWeChatxiaozhuohao@126.com

【教育背景】

1997-092001-06 湖南农业大学机械设计与制造专业学士

2002-092005-06 中南大学材料学院材料学专业硕士

2005-092009-05 中南大学材料学院材料学专业博士

【工作履历】

2001-072002-08东莞铭峰模具有限公司模具结构设计工程师

2009-062011-10景德镇陶瓷大学讲师

2011-112018-11景德镇陶瓷大学副教授

2017-072018-07 新加坡南洋理工大学,访问学者

2018-092019-08 中科院宁波材料研究所,西部之光访问学者

2018-12至   今   景德镇陶瓷大学教授

【奖励与荣誉】

[1] 2018年,陶瓷技术创新人才奖

[2] 2018年,江西省青年井冈学者

[3] 2018年,磨料磨具行业技术创新二等奖

[4] 2017年,磨料磨具行业技术创新三等奖

[5] 2017年,江西省杰出青年人才

【研究兴趣】

[1] 非晶相转变及其应用

[2] 先进玻璃与微晶玻璃材料

[3] 高性能陶瓷材料

[4] 纳米材料与二维材料

[5] 高端磨削用高性能磨具结合剂

【科研项目】

部分主持科研项目:

[1] 国家自然科学基金,高耐磨高析晶度透明微晶熔块釉的结构演变与性能调控。

[2] 国家自然科学基金,锗酸盐玻璃的稀土增强机理及其强场辅助纳米微晶化调控。

[3] 中央组织部“西部之光”访问学者人才培养计划。

[4] 江西省杰出青年人才培养计划。

[5] 江西省百人远航计划。

[6] 江西省重点基金,高强度高红外透过率锗酸盐玻璃的制备及其可控纳米微晶化。

[7] 江西省自然科学基金,锗酸盐玻璃的稀土增强机理及其在强场中的受控晶化研究。

[8] 江西省自然科学基金,固体氧化物燃料电池封接用微裂纹自修复微晶玻璃的研究。

[9] 江西省教育厅重点基金,建筑陶瓷用高耐磨微晶玻璃熔块釉的制备与性能研究。

[10] 江西省教育厅重点基金,原子层沉积制备Al2O3膜层及其耐磨性能研究。

[11] 江西省教育厅基金,透明纳米晶磷酸盐微晶玻璃自析晶机理研究。

[12] 江西省教育厅基金,红外光学窗口用宽波段高透过率锗酸盐玻璃的研究。

[13] 景德镇市科技项目,电子封装用高性能微晶玻璃材料的研究。

[14] 景德镇市科技项目,稀土矿尾砂制备轻质高强隔热泡沫微晶玻璃。

[15] 横向课题,刚玉砂轮用高性能微晶玻璃结合剂的研制。

[16] 横向课题,环保无氟乳白玻璃酒瓶配方的研制。

【代表性论文】

[1] Zhuohao Xiao*, Xin-Yuan Sun, Xiuying Li, Yongqing Wang, Zhiqiang Wang, Bowei Zhang, et al. Phase transformation of GeO2 glass to nanocrystals under ambient condition. Nano Letters 2018;18(5):3290-3296. (IF, 12.080)

[2] Shijin Yu, Vincent Ming Hong Ng, Fajun Wang, Zhuohao Xiao, Cuiyun Li, L. B. Kong, et al. Synthesis and application of iron-based nanomaterials as anode of lithium-ion batteries and supercapacitors. Journal of Materials Chemistry A 2018;6(20):9332-9367. (IF, 9.931)

[3] Zhuohao Xiao, Xianglin Li, Xiuying Li, Shijin Yu, Shu Ye, Chuanhu Wang, et al. Recent Development in Nanocarbon Materials for Gas Sensor Applications. Sensors and Actuators B: Chemical 2018;274:235-267. (IF, 5.667)

[4] Zhuohao Xiao, Xinyuan Sun, Hongfang Zhang, Chuanhu Wang, Lie Liu, Zhihong Yang, et al. Low temperature sintered magneto-dielectric ferrite ceramics with near net-shape derived from high-energy milled powders. Journal of Alloys and Compounds 2018;751:28-33.

[5] Zhuohao Xiao, Xiuying Li, Qiankun Xiao, Wenyan Luo, Hongfang Zhang, Chuanhu Wang, et al. Bismuth lanthanum titanate ceramics from amorphous precursors activated by using mechanochemical treatment. Ceramics International 2018;44(11):13106- 13112.

[6] Zhuohao Xiao, Xinyuan Sun, Shijin Yu, Xiuying Li, Min Wu, Chuanhu Wang, et al. Effect of Bi2O3 on phase formation and microstructure evolution of mullite ceramics from mechanochemically activated oxide mixtures. Ceramics International 2018;44(12):13841-13847.

[7] Zhuohao Xiao, Xianglin Li, Xinyuan Sun, Shijin Yu, Yi Jiang, Xiuying Li, et al. Phase formation and microstructure of Cr2O3 doped mullite ceramics through mechanochemical activation Journal of Physics and Chemistry of Solids 2018;123:198-205.

[8] Zhuohao Xiao, Xianglin Li, Xiaofeng Dong, Jianfeng Tang, Chuanhu Wang, Tianshu Zhang, et al. Sintering and electrical properties of commercial PTZ powders modified through mechanochemical activation. Journal of Materials Science 2018;53:13769 -13778.

[9] Zhuohao Xiao, Chuanhu Wang, Lie Liu, Zhihong Yang, Ling Bing Kong. Optimization of Ni0.95-xZnxCo0.05Fe1.90Mn0.02O4 ceramics with promising magneto-dielectric properties for VHF antenna miniaturization. Journal of Advanced Dielectrics 2018;8(1):1850001(1-6).

[10] Zhuohao Xiao, Yongtao He, Qiankun Xiao, Wenyan Luo. Visible light photocatalytic performance of Bi5O7Br synthesized by hydrothermal method. Basic & Clinical Pharmacology & Toxicology, 2018. 124(2): 60-61.

[11] Zhuohao Xiao, Xiuying Li, Xiaofeng Dong, Wenyan Luo, Ling Bing Kong. Fabrication and characterization of lightweight foam ceramics from rare earth tailings. Biointerface Research in Applied Chemistry 2017;7(6):3000-3003.

[12] Zhuohao Xiao, Xiaofeng Dong, Xiuying Li, Wenyan Luo, Huayin Liang, Ling Bing Kong. Low temperature sintered cordierite ceramics from MgO-Al2O3-SiO2 glass powder. Biointerface Research in Applied Chemistry 2017;7(6):3004-3007.

[13] Zhuohao Xiao, Chuanhu Wang, Lie Liu, Zhihong Yang, Ling Bing Kong. Rapid processing of ferrite ceramics with promising magneto-dielectric. Journal of Advanced Dielectrics 2017;7(6):1750040.

[14] Xiuying Li, Zhuohao Xiao*, Minhua Luo, Xiaofeng Dong, Ting Du, Yongqing Wang. Low melting glasses in ZnO-Fe2O3-P2O5 system with high chemical durability and thermal stability for sealing or waste immobilization. Journal of Non-Crystalline Solids 2017;469:62-69.

[15] Xin-Yuan Sun, Zhuo-Hao Xiao*, Yun-Tao Wu, Zhitao Kang. Fast Ce3+-activated borosilicate glass scintillators prepared in air atmosphere. Ceramics International 2017;43:3401-3404.

[16] Zhuohao Xiao, Yunzhi Wang, Runlin Han, Minhua Luo. Structures and properties of ZnO-BaO-Bi2O3-B2O3 glass for low-temperature sealing. Glass Technol.: Eur. J. Glass Sci. Technol. A 2016;57(1):20-26.

[17] Zhuo-hao Xiao, Xin-yuan Sun, Kun Liu, Wen-yan Luo, Yun-zhi Wang, Min-hua Luo, et al. Crystallization behaviors, thermo-physical properties and seal application of Li2O-ZnO-MgO-SiO2 glass-ceramics. Journal of Alloys and Compounds 2016;657:231-236.

[18] Zhuohao Xiao, Minhua Luo, Runlin Han, Yunzhi Wang. Crystallization behaviour of Y2O3 doped germanate oxyfluoride glass-ceramics. Glass Technol.: Eur. J. Glass Sci. Technol. A, 2015;56(4):126–131.

[19] Xiao Zhuohao, Lu Anxian, Li Xiuying. Infrared transmittance and crystallization of germanium glass prepared by batch soaking process in CCl4. Journal of Central South University of Technology 2007;14(2):105-111.

[20] Zhuohao Xiao, Chenggang Zuo, Ligang Zhu, Yuanyuan Chen, Anxian Lu. Structure and properties of multicomponent germanate glass containing yttria. Advances in Applied Ceramics 2009;108(6):352-331.

专利成果

[1] 适合低温快烧的陶瓷透水砖的制备方法,201810492572.4

[2] 一种通过燃料配方及自由基控制铜红釉呈色效果的方法及装置,201810424044.5

[3] 一种微晶玻璃及其制备方法和包含微晶玻璃的复合砂轮结合剂及其制备方法与应用,PCT/CN2017/119715

[4] 一种高导热高绝缘电子封装材料的制备方法,201711411331.4

[5] 一种高强度高透明锗酸盐微晶玻璃及其制备方法,201711411332.9

[6] 一种高长径比莫来石晶须陶瓷新料的制备方法,201711411333.3

[7] 一种高强度低温烧结微晶玻璃结合剂及其制备方法,201710456315.0

[8] 一种建筑陶瓷用高耐磨透明微晶熔块釉和釉层的制备方法以及制得的产品,201710140146.X 

[9] 一种鸡油黄琉璃材料及其制备方法,201710140140.2

[10] 一种易插拔并防触电的电源插座,201521061219.9

[11] 一种离子吸附型稀土矿的综合处理工艺方法,201510587600.7

[12] 一种微纳米二氧化锗晶体的制备方法及其制得的产品,201510283056.7

[13] 一种利用稀土尾砂制备的蜂窝陶瓷蓄热体及其制造方法,201410704755.X

[14] 一种利用稀土尾砂制备的渗水砖及其制造方法,201410680166.2

[15] 组合壁流式蜂窝陶瓷气体除尘装置,201420144721.5

[16] 一种堇青石材料制备方法,201310357631.4

[17] 一种新型液体包装盒,201320314560.5

[18] 一种用于壁流式蜂窝陶瓷高效堵孔的辅助设备,201320204527.7

[19] 一种壁流式蜂窝陶瓷的膜层改性材料及其修饰改性陶瓷过滤体的方法,201310111138.4

[20] 一种用于低膨胀壁流式蜂窝陶瓷的堵孔材料及封堵方法,201210096239.4

[21] 一种以稀土尾砂为主要原料制备的陶瓷砖及其制造方法,201110320941.X

[22] 一种以光伏硅切割废料制备的碳化硅复合陶瓷及其制造方法,201110293554.1

[23] 一种主晶相为Y3Al5O12Y-Si-Al-O-N体系氧氮微晶玻璃的制备,200910043771.8

[24] 0.35um波段红外透过耐高温玻璃陶瓷材料及制备方法,200810030496.1

[25] 一种降低玻璃中羟基含量工艺,200810030499.5

[26] 含高价阳离子氧化物的掺Yb3+离子氟磷酸盐激光玻璃材料及其制造方法,200710034382.X

[27] 4J29可伐合金封接用微晶玻璃材料及其制造方法,200610032335.7

[28] 干簧管用红外加热封装无铅电子玻璃的制备方法,200510000961.3

 

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