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曹留烜

曹留烜 副教授

电话:0592-5952779

邮箱:caoliuxuan@xmu.edu.cn

研究方向: 材料辐照效应、辐照技术在水处理方面的应用。

个人履历


厦门大学能源学院,副教授,硕士生导师。

2012年毕业于北京大学物理学院,取得核技术应用专业工学博士学位。主持国家自然科学基金3项,福建省自然科学基金1项,主持参与企业项目多项。在Energy & Environmental Science, Advanced Science, Advanced Functional Materials, ACS Nano等国际期刊上发表论文34篇,授权发明专利10项。近5年以一作/通讯作者发表影响因子大于10的论文5篇。担任Advanced Functional Materials, ACS Nano, Energy等国际学术期刊审稿人。担任“全国材料与器件科学家智库专家委员会”委员及理事会会员、“中国电工技术学会电子束离子束专业委员会”委员。

获得荣誉


北京大学优秀毕业生、北京市优秀毕业生、厦门市高层次人才、福建省高层次人才

招生招聘

欢迎物理、化学、材料专业学生报考研究生。课题组招聘行政助理:要求本科及以上学历;具有材料、物理、化工、热能、计算领域的学科背景或者科研经历优先。

承担科研项目


1.多物理场耦合实现离子选择性输运的核孔膜体系 国家自然科学基金面上项目 主持

2.离子径迹法制备纳米孔道的温差电效应研究 国家自然科学基金青年项目 主持

3.离子径迹制备纳米孔及其能量转化与物质输运研究 国家自然科学基金重点项目子课题 主持

4.核孔膜-氧化石墨烯复合材料的离子分离效应研究 福建省基金 主持

5.用于核废料处置的锶铯高效分离体系 中央高校基金 主持

6.氧化石墨烯复合材料的离子分离效应研究 中央高校基金 主持

7.基于多孔膜的病毒标的物分离富集技术 中央高校基金 主持

8.用于有机污水处理的电子束辐照催化氧化技术 横向课题 主持

9.堆内注水时RPV完整性分析技术服务合同 横向课题 主持

10.新型核能材料离子辐照及TEM在线观测研究 横向课题 主持

11.基于COMSOL程序的硅芯片散热模拟计算  横向课题 主持

12.基于COMSOL程序的焊接数值计算  横向课题 主持

13.金属样品的高温离子注入及样品表征 横向课题 主持

14.特定人造革污水应用电子束处理技术工艺流程 横向课题 主持

15.辐照效应实时原位分析装置的联机部件研制  国家自然科学基金仪器重点专项 参与

16.聚变环境中晶体取向对金属钨辐照行为的影响 国家自然科学基金 参与

17.核级硅酮防火抗辐射封堵材料产业化技术研发  横向课题 参与

18.离子辐照和分析测试服务 横向课题 参与

19.核动力大船用钢的带电离子辐照行为研究 横向课题 参与

20.异种钢焊接结构应力腐蚀开裂寿命预测模型应用验证分析 横向课题 参与

21.WHD585E钢的带电粒子辐照损伤研究 横向课题 参与

22.核反应堆堆内构件用奥氏体钢的带电离子辐照行为研究(外协项目)参与

23.燃料贮存格架用中子吸收材料(碳化硼颗粒增强铝基复合材料)离子辐照试验 横向课题 参与

24.建设“多离子束加速器与透射电子显微镜联机设施实验室” 横向课题 参与

主要科研成果


代表性论文

1.Zhiliang Shen, Guihua Yan, Gaofeng Chen, Liuxuan Cao*, Xing Tang, Yong Sun, Jian Liu, Shuliang Yang, Lu Lin, Xianhai Zeng*, Preparation and strontium adsorption behaviors of a new sodium manganese silicate material, Separation and Purification Technology, 2022, 290, 120824

2.Pengfei Ma, Chang Liu, Yan Liu, Hui Liu, Liuxuan Cao*, Transient heat transfer analysis of double-layer molten pool under severe accident, Journal of Nuclear Science and Technology, 2021, doi.org/10.1080/00223131.2021.2023368

3.Pengfei Ma, Jianxiang Zheng, Danting Zhao, Wenjie Zhang, Gonghao Lu, Lingxin Lin, Zeyuan Zhao, Zijing Huang* and Liuxuan Cao*, The Selective Transport of Ions in Charged Nanopore with Combined Multi-Physics Fields, Materials, 2021, 14, 7012

4.Shengming Jiang, Ruihua Zhu, Ming Chen, Huanhuan He, Zhiwei Lin, Xiaotian Hu, Jian Zhang*, Liuxuan Cao*, ZijingHuang, In-situ He+ irradiation induced crystallization on crystalline/amorphous ZrC films, Materials Today Communications, 2021, 28, 102580

5.Pan Jia, Lili Wang, Yuhui Zhang, Yating Yang, Xiaoyan Jin, Min Zhou, Di Quan, Meijuan Jia, Liuxuan Cao, Run Long, Lei Jiang, Wei Guo*, Harnessing Ionic Power from Equilibrium Electrolyte Solution via Photoinduced Active Ion Transport through van‐der‐Waals‐Like Heterostructures, Advanced Materials, 2021, 33, 2007529

6.Haocheng Liu, Jia Huang, Liuxuan Cao, Yue Su, Zhiying Gao, Pengfei Ma, Songqin Xia, Wei Ge, Qingyuan Liu, Shuang Zhao, Helium-hydrogen synergistic effects on swelling in in-situ multiple-ion beams irradiated  steels, Chinese Physics B, 2021, 30, 086106

7.Ling Wu, Peizhao Yu, Zhi’ao Huang, Jun Li, Jianxiang Zheng, Junlong Wang, Tao Xu, Yuxuan Gao, Liuxuan Cao, Huifang Miao*, Development of optimization platform and its application in severe accident management, Progress in Nuclear Energy, 2021, 136, 103721

8.Haocheng Liu, Jia Huang, Chenxu Wang, Songqin Xia, WeiGe, Qingyuan Liu, Yue Su,  Zhiying Gao, Shuang Zhao, Congcong Du, Liuxuan Cao, Tongde Shen, Yugang Wang*, Effects of grain boundaries and nano-precipitates on helium bubble behaviors in lanthanum-doped nanocrystalline steel, Scripta Materialia, 2021, 200, 113900

9.Zhiwei Lin, Caiyu Wu, Huanhuan He, Shengming Jiang, Feng Ren, Liuxuan Cao*, Zijing Huang, Jian Zhang*, In-situ transmission electron microscopy observation of the helium bubble evolution in pre-irradiated fluorapatite during annealing, Ceramics International, 2021, 12(47), 16521-16527

10.Renjie Qu, Xianhai Zeng, Lingxin Lin, Gehui Zhang, Feng Liu, Chao Wang, Shenglin Ma, Chang Liu, Huifang Miao,* and Liuxuan Cao*, Vertically-Oriented Ti3C2Tx MXene Membranes for High Performance of Electrokinetic Energy Conversion, ACS Nano, 2020, 14, 12, 16654–16662

11.Nianyuan Wu, Xiangyan Zhan, Xingyi Zhu, Zhihui Zhang, Jian Lin, Shan Xie, Chao Meng, Liuxuan Cao, Xiaonan Wang, Nilay Shah, Xuyue Zheng, Yingru Zhao*, Analysis of Biomass Polygeneration Integrated Energy System Based on a Mixed-Integer Nonlinear Programming Optimization Method, Journal of Cleaner Production, 2020, 271, 122761

12.Zuyun He, Qiuyu Liu, Yunmin Zhu, Tuo Tan, Liuxuan Cao*, Shijun Zhao, Yan Chen*, Defect Mediated Adsorption of Metal Ions for Constructing Ni Hydroxide/MoS2 Heterostructure as High-Performance Water Splitting Electrocatalysts, ACS Applied Energy Materials, 2020, 3, 7, 7039-7047

13.Zhenkun Zhang, Wenhao Shen, Lingxin Lin, Mao Wang, Ning Li, Zhifeng Zheng, Feng Liu, and Liuxuan Cao*, Vertically Transported Graphene Oxide for High‐Performance Osmotic Energy Conversion, Advanced Science, 2020, 7, 2000286

14.Zhenkun Zhang, Chao Wang, Lingxin Lin, Mengyi Xu, Yichun Wu*, and Liuxuan Cao*, The Rectified Ion Transport in Ultra-thin Membrane Governed by Outer Membrane Electric Double Layer, Chinese Journal of Chemistry, 2020, 38, 1757

15.Qi Wen#, Pan Jia#, Liuxuan Cao#, Jipeng Li, Di Quan, Lili Wang, Yanbing Zhang, Diannan Lu, Lei Jiang, and Wei Guo,* Electric-Field-Induced Ionic Sieving at Planar Graphene Oxide Heterojunctions for Miniaturized Water Desalination, Advanced Materials, 2020, 32, 1903954

16.Bing Tang, Baoqun Cui, Lumin Wang, Ruigang Ma, Ning Li, Lihua Chen, Liuxuan Cao, Qinghua Huang, Jian Zhang, Guang Ran, Yingjun Ma, Jinchi Huang, Xie Ma, and Zehui Zhou, The development of a hydrogen-helium dual-beam ion implanter, Review of Scientific Instruments, 2020, 91, 013309

17.Danyan Ji, Qi Wen, Liuxuan Cao, Qian Kang, Shaojun Lin, Xiaopeng Zhang,  Lei Jiang, Wei Guo,* Electrokinetically Controlled Asymmetric Ion Transport through 1D/2D Nanofluidic Heterojunctions, Advanced Materials Technologies, 2019, 4, 1800742

18.Hao Li, Feilong Xiao, Gang Hong, Jianjian Su, Ning Li, Liuxuan Cao,* Qi Wen, Wei Guo, On the Role of Heterogeneous Nanopore Junction in Osmotic Power Generation, Chinese Journal of Chemistry, 2019, 37, 469-473

19.Yongliang Tang#, Liuxuan Cao#, Kan Zhan, Yu Xie, Daoheng Sun, Xu Hou, Songyue Chen, Performance analysis of solid-state nanopore chemical sensor, Sensors and Actuators B: Chemical, 2019, 286, 315-320

20.Liuxuan Cao, Qi Wen, Yaping Feng, Danyan Ji, Hao Li, Ning Li, Lei Jiang, and Wei Guo*,  On the Origin of Ion Selectivity in Ultra-thin Nanopores: Insights for Membrane-Scale Osmotic Energy Conversion, Advanced Functional Materials, 2018, 28, 1804189

21.Feilong Xiao, Danyan Ji, Hao Li, Jialiang Tang, Yaping Feng, Liping Ding, Liuxuan Cao*, Ning Li, Lei Jiang and Wei Guo*, A general strategy to simulate osmotic energy conversion in multi-pore nanofluidic systems, Materials Chemistry Frontiers, 2018, 2, 935-941 (Top article picks)

22.Jianjian Su, Danyan Ji, Jialiang Tang, Hao Li, Yaping Feng, Liuxuan Cao,* Lei Jiang, and Wei Guo, Anomalous Pore‐Density Dependence in Nanofluidic Osmotic Power Generation, Chinese Journal of Chemistry, 2018, 36, 417-420

23.Feilong Xiao,  Danyan Ji,  Hao Li,  Jialiang Tang,  Yaping Feng,  Liping Ding,  Liuxuan Cao, *  Ning Li,  Lei Jiang  and  Wei Guo*, Simulation of osmotic energy conversion in nanoporous materials: a concise single-pore model, Inorganic Chemistry Frontiers, 2018, 5, 1677-1682

24.Liuxuan Cao, Feilong Xiao, Yaping Feng, Weiwei Zhu, Jinlei Yang, Xiaopeng Zhang, Wei Guo*, Ning Li, Lei Jiang, Anomalous Channel-Length Dependence in Nanofluidic Osmotic Energy Conversion, Advanced Functional Materials, 2017, 27, 1604302-1604308

25.Yanan Jiang, Yaping Feng, Jianjian Su, Jingxin Nie, Liuxuan Cao, Lanqun Mao, Lei Jiang, and Wei Guo, On the Origin of Ionic Rectification in DNA-Stuffed Nanopores: The Breaking and Retrieving Symmetry, Journal of the American Chemical Society, 2017, 139, 18739−18746

26.Liuxuan Cao, Wei Guo, et al., Concentration-Gradient-Dependent Ion Current Rectification in Charged Conical Nanopores, Langmuir, 2012, 28, 2194−2199 (Cover Story)

27.Liuxuan Cao, Wei Guo, Wen Ma, et al., Towards understanding the nanofluidic reverse electrodialysis system: well matched charge selectivity and ionic composition, Energy & Environmental Science, 2011, 4, 2259-2266

28.Lin Wang, Lixin Sun, Ceming Wang, Long Chen, Liuxuan Cao, Guoqing Hu et al., Nanofluidic Pulser Based on Polymer Conical Nanopores, The Journal of Physical Chemistry C, 2011, 115 , 22736–22741

29.Wei Guo, Hongwei Xia, Liuxuan Cao, et al., Integrating Ionic Gate and Rectifier Within One Solid-State Nanopore via Modification with Dual-Responsive Copolymer Brushes, Advanced Functional Materials, 2010, 20, 3561–3567

30.Wei Guo, Hongwei Xia, Fan Xia, Xu Hou, Liuxuan Cao, Lin Wang, Jianming Xue, Guangzhao Zhang, Yanlin Song, Daoben Zhu, Yugang Wang,* and Lei Jiang*, Current Rectification in Temperature-Responsive Single Nanopores, ChemPhysChem, 2010, 11, 859 – 864

31.Wei Guo, Liuxuan Cao, Junchao Xia, et al., Energy Harvesting with Single-Ion-Selective Nanopores: A   Concentration-Gradient-Driven Nanofluidic Power Source, Advanced Functional Materials, 2010, 20, 1-6

32. Liuxuan Cao, Yugang Wang*, Fabrication and investigation of single track-etched nanopore and its applications, Radiation Measurement, 2009, 44, 1093-1099

33.Xu Hou, Wei Guo, Fan Xia, Fu-Qiang Nie, Hua Dong, Ye Tian, Liping Wen, Lin Wang, Liuxuan Cao, et al., A Biomimetic Potassium Responsive Nanochannel: G-Quadruplex DNA Conformational Switching in a Synthetic Nanopore, Journal of the American Chemical Society, 2009, 131, 7800–7805

34.W.M. Zhang, J. Li, L.X. Cao, et al., Fabrication of nanoporous silicon dioxide/silicon nitride membranes using etched ion track technique, NIM B, 2008, 266, 3166–3169

授权专利

1.曹留烜、李宁、李豪、张振坤、肖飞龙,一种高通量多孔膜的设计方法,中国 发明专利,ZL 2019 1 0221565.5 授权日期2021.05.14

2.曹留烜、周泓燕、洪钢,基于液体中双电荷层的独立感应式发电机及其发电方法,中国 发明专利 ZL 2019 1 0456028.9 授权日期2020.05.29

3.曹留烜、毛朝武、郑任翔、陈松月、洪钢、李宁,基于溶液中双电荷层的单电极发电机及其发电方法,中国 发明专利 ZL 2019 1 0456298.X 授权日期2020.05.29

4.曹留烜、李宁、毛朝武、林玲鑫,一种基于双电荷层的发电机及其发电方法,中国 发明专利 ZL 2019 1 0456053.7 授权日期2020.05.29

5.曹留烜、毛朝武、王超、陈松月、洪钢、李宁,基于双电荷层的滑动式发电机及其发电方法,中国 发明专利 ZL 2019 1 0456318.3 授权日期2020.04.14

6.张彬彬、曹留烜、王夺、李宁 一种电子束烟气脱硫脱硝的方法及装置 发明专利 中国ZL 2014 1 0549289.2  授权日期2016.2.17

7.张彬彬、王夺、曹留烜、李宁、刘运权、张尧立、赵英汝 一种烟气脱硫脱硝的方法、装置及其用途 中国 发明专利 ZL 2014 1 0743754.6  授权日期2016.5.11

8.曹留烜、肖飞龙、张彬彬、王夺、李宁、刘运权、张尧立、赵英汝 一种烟气脱硫脱硝的方法、装置及其用途 中国 发明专利 CN 104474859 B 授权日期2016.08.17

9.曹留烜、张彬彬、王夺、李宁、刘运权、张尧立、赵英汝 一种烟气脱硫脱硝装置 中国 实用新型 ZL 2014 2 0766526.6 授权日期2015.04.22

10.王宇钢、郭维、曹留烜,将以离子浓度梯度形式储存的自由能转化为电能的方法,中国发明专利,ZL 2009 1 0091546.1,授权日期2011.04.20

学生培养


第五届全国大学生材料设计邀请赛 三等奖 一项

厦门大学第一届海洋文化科技创新创意大赛 一等奖 一项

“杰瑞杯”第六届中国研究生能源装备创新设计大赛厦门大学选拔赛 一等奖、三等奖各一项

“杰瑞杯”第六届中国研究生能源装备创新设计大赛全国二等奖 一项

校优秀三好学生 2020年 一项

研究生国家奖学金 2020年 一项

厦门大学优秀毕业生 2020年 一项

第六届厦门大学“互联网+”大学生创新创业大赛 金奖、铜奖各一项

第四届厦门大学本科生创新创业年会优秀项目 一项

厦门大学第二届海洋文化科技创新创意大赛 一等奖 一项

“量道杯”2020年中国研究生能源装备创新设计大赛厦门大学选拔赛 一等奖、三等奖各一项

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