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邹永涛

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邹永涛  博士生导师

工作单位:304am永利集团

联系方式

电话:0755-23256562

邮箱:zouyongtao@sztu.edu.cn

个人简介        

邹永涛,副教授、博士研究生导师,深圳市海外高层次“孔雀计划”引进人才,原吉林大学物理学院/超硬材料国家重点实验室引进人才、学术骨干、副教授,日本国立爱媛大学博士(JSPS G-COE), 美国纽约州立大学(石溪)博士后;其先后在日、美、中多个世界顶尖的高压物理实验室中有过学习、工作的科研经历。至今,主持或共同主持了10余项国家级、省/市级等科研项目,包含:国家自然科学基金联合项目、国家自然科学基金面上项目、广东省教育厅重点专项、深圳市科创委面上项目、国家重点实验室开放基金、深圳市海外高层次人才科研基金、美国能源部核安全局基金等。现已在本领域重要SCI学术期刊上发表学术论文~40篇,如:Chem. Mater., Phys. Rev. Appl., Phys. Rev. B, Appl. Phys. Lett., Geophys. Res. Lett., Earth Planet. Sci. Lett., Inorg. Chem.等,已获授权国家专利9项,参加国际会议30余次。现应邀担任Appl. Phys. Lett., Phys. Rev. B, Inorg. Chem., J. Phys. Chem. CSCI期刊的审稿人。

研究方向:

1). 极端条件先进结构/功能材料的高温高压制备、表征及应用;

2). 高压高温(低温)极端条件下,凝聚态物质新材料的结构与性能研究;

3). 新材料的相变、状态方程、弹性性能的高温高压原位超声干涉测量、同步辐射X射线衍射及中子衍射研究;

4)极端条件下的光电功能材料研究。

工作经历:

2019.07至今 永利集团304am官方入口 副教授 博士研究生导师 深圳市海外高层次引进人才 (孔雀计划人才)  

2017.06--2019.06  南方科技大学 物理系 研究副教授/博士研究生导师

2014.11--2017.06 吉林大学 物理学院/超硬材料国家重点实验室, 副教授/硕士研究生导师、学术骨干、海外博士A类高层次引进人才

2012.11--2014.11 美国纽约州立大学(石溪) 高压物理研究中心 博士后

2009.11--2012.09  日本国立爱媛大学 理学部 助研 (Research Assistant)

主持及参与的代表性科研项目:

1、国家自然科学基金面上项目,Zr-Nb合金的相变、弹性模量及强度的高温高压原位超声与同步辐射的协同测量研究,2019.01~2022.12, 主持;

2、国家自然科学基金NSAF联合项目,高温高压原位超声与中子衍射协同测量新型实验技术及其应用,2021.01~2023.12,主持;

3、广东省教育厅重点专项、新型高熵合金的制备、 弹性模量与强度的高温高压研究、2021.01~2023.12、主持;

4、深圳市科技计划项目基础研究(面上项目),新型高熵合金的制备、弹性模量及强度的高温高压原位超声测量与同步辐射研究,2020.2~2023.1, 主持;

5、深圳市孔雀计划高层次人才科研启动项目、新型超硬材料的高温高压研究, 2020.01~ 2022.12,主持;

6、中国地震局-中国工程物理研究院高压物理与地震科技联合重点实验室,开放基金项目、2021.01~2022.12,主持;

7、超硬材料国家重点实验室开放基金、超硬超强纳米聚晶金刚石的高温高压制备及物性研究,2014/11--2015/11、主持;

8、国家自然科学基金联合项目,用于原位中子衍射的大腔体静高压技术研究,2010.01-2012.12,主要参与人;

9、深圳市“孔雀团队”项目,超硬材料的纳米聚晶研发与产业化,2017.03~2022.02,在研,主要参与人

10、广东省“广创团队”项目,超硬超强纳米聚晶材料研发与产业化,2017.08~2022.07,在研,主要参与人;

11、美国能源部国家核安全局(DOE-NNSA)、2010/10--2014/10、主要负责人 (排名2/5);

12、美国国家自然科学基金、2011/02—2015/01、主要负责人(排名2/5)。

代表性研究成果:

[1] Pei Wang,*, Sheng-Cai Zhu, Yongtao Zou,(contributed equally) (邹永涛), Haiyan Chen, Ying Liu, Weiwei Li, Jian Chen, Jinlong Zhu, Liusuo Wu, Shanmin Wang, Wenge Yang, Yuming Xiao, Paul Chow, Liping Wang, Yusheng Zhao*, Concurrent pressure-induced spin-state transitions and Jahn-Teller distortions in MnTe, Chemistry of Materials, 2022 (In Press), https://doi.org/10.1021/acs.chemmater.1c04199

[2] Xiuxiu Yang, Shihao Zhang, Hang Zhu, Peidong Tao, Lili Huang, Mu Li, Wei Zhang, Ying Li, Cangtao Zhou, Yongtao Zou (邹永涛)*, Structural stability, thermodynamic and elastic properties of cubic Zr0.5Nb0.5 alloy under high pressure and high temperature, Crystals, 12, 631 (2022).

[3] Yongtao Zou (邹永涛),* Ke Liu, Pei Wang, Daowei Wang, Mu Li, Ying Li, Leiming Fang, Hongbin Zhuo, Shuangchen Ruan, Cangtao Zhou, Yusheng Zhao, Sound velocities, elasticity, and mechanical properties of stoichiometric submicron polycrystalline δMoN at high pressure, Inorg. Chem., 60, 11897 (2021).

[4] Yongtao Zou (邹永涛)*, Cangtao Zhou, Mu Li, Liwei Deng, Hua Zhang, Xiaoyang Guo, Lu Li, Sizhong Wu, Taiwu Huang, Hui Li, Xun Cai, Hongbin Zhuo, Shuangchen Ruan,* Baosheng Li, Acoustic velocities, elasticity and pressure-induced elastic softening in compressed neodymium, Mechanics of Materials, 155, 103776 (2021).

[5] Yongtao Zou (邹永涛)*, Mu Li, Wei Zhang, Cangtao Zhou*, Tony Yu, Yanbin Wang, Yusheng Zhao, Shuangchen Ruan*, Baosheng Li, Unraveling Microstrain-promoted structural evolution and thermal-driven phase transition in c-Sc2O3 nanocrystals at high pressure, Physical Review B, 102, 214115 (2020).

[6] Yongtao Zou* (邹永涛), Hua Zhang, Pressure-induced structural instability and amorphization in compressed α-V2O5, J. Alloys Compd., 790, 164 (2019).

[7] Yongtao Zou* (邹永涛), Wei Zhang, Ting Chen, Xing-ao Li, Chun-Hai Wang, Tony Yu, Bingbing Liu, Yanbin Wang, Robert C. Liebermann, Yusheng Zhao, and Baosheng Li, Thermally induced anomaly in the shear behavior of Fe3O4 magnetite at high pressure, Phys. Rev. Appl., 10, 024009 (2018).

[8] Yongtao Zou* (邹永涛), Ying Li, Haiyan Chen, David Welch, Yusheng Zhao, Baosheng Li, Thermoelasticity and anomalies in the pressure dependence of phonon velocities in niobium, Appl. Phys. Lett., 112, 011901 (2018).

[9] Yongtao Zou* (邹永涛),Wei Zhang, Xuefei Li, Maining Ma, Xing-ao Li, Chun-Hai Wang, Bin He, Shanmin Wang, Zhiqiang Chen, Yusheng Zhao, and Baosheng Li, Pressure-induced anomalies and structural instability in compressed β-Sb2O3, Phys. Chem. Chem. Phys., 20, 11430 (2018).

[10] Yongtao Zou* (邹永涛), Xintong Qi, Cheng Zhang, Shuailing Ma, Wei Zhang, Ying Li, Ting Chen, Xuebing Wang, Zhiqiang Chen, David Welch, Pinwen Zhu, Bingbing Liu, Qiang Li, Tian Cui, Baosheng Li, Discovery of superconductivity in hard hexagonal ε-NbN, Scientific Reports, 6, 22330 (2016).

[11] Yongtao Zou* (邹永涛), Xuebing Wang, Ting Chen, Xuefei Li, Xintong Qi, David Welch, Pinwen Zhu, Bingbing Liu, Tian Cui, Baosheng Li, Hexagonal-structured ε-NbN: ultra-incompressibility, high shear rigidity, and a possible hard superconducting material, Scientific Reports, 5, 10811 (2015).

[12] Yongtao Zou* (邹永涛), Steeve Gréaux, Tetsuo Irifune, Baosheng Li, Yuji Higo, Unusual pressure effect on the shear modulus in MgAl2O4 spinel, J. Phys. Chem. C, 117, 24518 (2013).

[13] Yongtao Zou*(邹永涛), Xintong Qi, Xuebing Wang, Ting Chen, Xuefei Li, David Welch, Baosheng Li, High-pressure behavior and thermoelastic properties of niobium studied by in situ X-ray diffraction, J. Appl. Phys., 116, 013516 (2014).

[14] Yongtao Zou* (邹永涛), Tetsuo Irifune, Steeve Gréaux, Matthew L. Whitaker, Toru Shinmei, Hiroaki Ohfuji, Ryo Negishi, Yuji Higo, Elasticity and sound velocities of polycrystalline Mg3Al2(SiO4)3 garnet up to 20 GPa and 1700 K, J. Appl. Phys., 112, 14910 (2012).

[15] Yongtao Zou(邹永涛), Duanwei He, Xiankui Wei, Richeng Yu, Tiecheng Lu, Xianghui Chang, Shanmin Wang, Li Lei, Nanosintering mechanism in MgAl2O4 transparent ceramics at high pressure, Mater. Chem. Phys., 123, 529 (2010).

[16] Yongtao Zou*(邹永涛), Tetsuo Irifune, Steeve Gréaux, Matthew L. Whitaker, Yuji Higo, Thermal equation of state of Mg3Al2Si3O12 pyrope garnet up to 19 GPa and 1700 K, Phys. Chem. Miner., 39, 589 (2012).

[17] Yongtao Zou*(邹永涛), Tetsuo Irifune, Phase relations in Mg3Cr2Si3O12 and formation of majoritic knorringite garnet at high pressure and high temperature, J. Miner. Petro. Sci., 107, 197 (2012).

[18] Yongtao Zou(邹永涛), Li Lei, Zhao Wang, Wei Zhang, Duanwei He*, Grain size reduction of copper subjected to accumulative fold and repetitive uniaxial compression, Chin. Phys. B, 18, 815 (2009).

[19] Dong-Yun Gui, Zhang-Kai Cao, Wei Han, Jian-Qi Qi, Tie-Cheng Lu, Yongtao Zou (邹永涛), Chun-Hai Wang, Effects of cation ordering and microstructure on LaGdZr2O7 transparent ceramics processing by vacuum sintering, Ceram. Int., 44, 7006 (2018).

[20] Shiqi Liu, Lei Han, Yongtao Zou (邹永涛), Pinwen Zhu, Baochang Liu, Polycrystalline diamond compact with enhanced thermal stability, J. Mater. Sci. Tech., 33, 1386 (2017).

[21] Xintong Qi, Yongtao Zou (邹永涛#), Xuebing Wang, Ting Chen, David O. Welch, Jianzhong Jiang, Baosheng Li, Elastic anomaly and polyamorphic transition in (La, Ce)-based bulk metallic glass under pressure, Scientific Reports, 7, 724 (2017).

[22] Ting Chen, Robert C. Liebermann, Yongtao Zou (邹永涛), Ying Li, Xintong Qi, Baosheng Li, Tracking silica in Earth's upper mantle using new sound velocity data for coesite to 5.8 GPa and 1073 K, Geophys. Res. Lett., 44, 7757 (2017).

[23] Xuebing Wang, Ting Chen, Yongtao Zou (邹永涛), Robert C. Liebermann, Baosheng Li. Elastic wave velocities of peridotite KLB-1 at mantle pressures and implications for mantle velocity modeling, Geophys. Res. Lett., 41, 3289 (2015).

[24] Xuebing Wang, Ting Chen, Xintong Qi, Yongtao Zou (邹永涛#), Jennifer Kung, Tony Yu, Yanbin Wang, Robert C. Liebermann, Baosheng Li, Acoustic travel time gauges for in-situ determination of pressure and temperature in multi-anvil apparatus, J. Appl. Phys., 118, 065901 (2015).

[25] Ting Chen, Gabriel D. Gwanmesia, Xuebing Wang, Yongtao Zou (邹永涛), Robert C. Liebermann, Chloé Michaut, Baosheng Li, Anomalous elastic properties of coesite at high pressure and implications for the upper mantle X-discontinuity, Earth Planet. Sci. Lett., 412,42 (2015).

[26] Wei Zhang, Nina Ge, Yongtao Zou(邹永涛), Zhaoyi Zeng, Lingcang Cai, Influence of missing guest and host atoms on the mechanical and electronic properties of type-I clathrate compound Ba8Si46, J. Alloy. Comp., 653, 77 (2015).

[27] Ying Li, Yongtao Zou(邹永涛), Ting Chen, Xuebing Wang, Xintong Qi, Haiyan Chen, Jianguo Du, Baosheng Li. P-V-T equation of state and high-pressure behavior of CaCO3aragonite, Am. Miner., 100, 2323 (2015).

[28] Shanmin Wang, Duanwei He, Yongtao Zou(邹永涛), Jianjun Wei, Li Lei, Yongjun Li, Jianghua Wang, Wendan Wang, High-pressure and high-temperature sintering of nanostructured bulk NiAl materials, J. Mater. Res., 24, 2089 (2009).

[29] Li Lei, Duanwei He, Yongtao Zou(邹永涛), Wei Zhang, Zhao Wang, Ming Jiang, Maolu Du, Phase transitions of LiAlO2 at high pressure and high temperature, J. Solid State Chem.,181, 1810 (2008).

[30] Zhao Wang, Duanwei He, Wei Zhang, Wenqiang Li,Wenyong Li, Jiaqian Qin, Li Lei, Yongtao Zou(邹永涛), Xiangdong Yang, Portable high pressure sapphire anvil cell for gas hydrates research, Rev. Sci. Instru., 81, 085102 (2010).

[31] Kai He, Duanwei He, Li Lei, Yongtao Zou (邹永涛), Jiaqian Qin, Shanmin Wang, Synthesis of low-density γ-Al2O3 from high-density α-Al2O3 in the presence of LiBO2 melt under high pressure, Solid State Comm., 150, 2106 (2010).

授权国家发明专利:

1) 邹永涛、赵予生、王培、王善民、王李平,纳米/亚微米结构wBN超硬材料及wBN-cBN超硬复合材料及制备方法和刀具,国家发明专利,公开号:109437920A

2) 邹永涛、赵予生、王培、王善民、王李平,纳米结构含硼六方金刚石聚晶超硬复合材料及其制备方法和应用,国家发明专利,公开号:109574666A

3) 邹永涛、赵予生、王培、王善民、王李平,纳米/亚微米结构B13N2-cBN超硬复合材料及其制备方法和刀具,国家发明专利,公开号:109627013A

4) 邹永涛、赵予生、王培、王善民、王李平,纳米结构斯石英-立方氮化硼超硬复合材料及其制备方法和刀具,国家发明专利,公开号:109534826A

5) 王培、赵予生、邹永涛、王善民、王李平,金刚石芯纳米聚晶材料、其制备方法及超硬刀具,国家发明专利,专利号:201910022088

6) 王培、赵予生、邹永涛、王善民、王李平,螺旋位错型立方氮化硼及其制备方法、刀具、钻头,国家发明专利,公开号:109678477A

7) 王培、赵予生、邹永涛、王善民、王李平,硼皮氮芯纳米聚晶材料、其制备方法及超硬刀具,国家发明专利,公开号:109734465A

8) 贺端威,邹永涛*,王江华,常相辉,卢铁城,张杰,纳米粉体的真空热处理方法,国家发明专利,专利号:CN 101200282 B

9) 常相辉,卢铁城,张杰,贺端威,邹永涛*,王江华,块状不裂透明纳米陶瓷的制备方法,国家发明专利,专利号:CN 101186510 B


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