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个人简介

教育背景 2006.9-2009.7 中科院国家纳米科学中心 博士研究生 师从江雷院士 工作履历 2021.8-至今 北京航空航天大学化学学院 教授、博士生导师、副院长 2020.10-2021.7 北京航空航天大学化学学院 副教授、博士生导师、副院长 2017.7-2020.9 北京航空航天大学化学学院 副教授、博士生导师 2015.8-2017.6 北京航空航天大学化学学院 副教授、硕士生导师 2014.3-2015.3 澳大利亚卧龙岗大学超导与电子材料研究所 访问学者 师从窦士学院士 2009.7-2015.7 北京航空航天大学化学学院 讲师、硕士生导师 学术兼职 担任学院教学指导委员会副主任、学院教学督导组组长 沙河实验教学平台负责人、物理化学实验室负责人 担任教育部学位中心学位论文通讯评议人 担任Adv. Mater., Adv. Funct. Mater., ACS Nano, ACS Appl. Mater. Interfaces等权威杂志审稿人 奖励与荣誉 2021年获工信部“十四五”规划教材立项(物理化学实验) 2020年获凡舟教学团队负责人(物理化学实验) 2019-2020连续两年获北航校级优秀硕士论文指导教师 2017-2020连续四年获北航学院大类核心优质课程主讲教师 2020年获北航校级一流课程负责人 2019年获北航教学优秀奖 2019年获北航本科教学成果二等奖 2019年获北航青年教师教学比赛三等奖 2017年获北航青年拔尖人才计划 2016年获北航本科教学成果二等奖 2014年获The 5th ACSMS国际会议获Poster award of Inorganic Chemistry Frontiers奖 2013年获北京市青年英才计划 2009年获中科院国家纳米科学中心优秀博士论文

研究领域

仿生智能纳米界面材料; 光电功能材料

近期论文

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Y. Li, J. Li, L. Liu, Y. Yan, Q. Zhang, N. Zhang, L. He, Y. Liu, X. Zhang, D. Tian*, J. Leng*, L. Jiang. Switchable Wettability and Adhesion of Micro/Nanostructured Elastomer Surface via Electric Field for Dynamic Liquid Droplet Manipulation. Adv. Sci. 2020, 7, 2000772 Pei, C. T., Peng Y., Zhang Y., Tian D. L.,* Liu K. S.,* Jiang L. An integrated janus mesh: underwater bubble antibuoyancy unidirectional penetration. ACS Nano 2018, 12, 5489?5494.? Dou, Y. H., Tian, D. L.,* Sun, Z. Q.,* Liu, Q. N., Zhang, N., Kim, J. H., Jiang, L., Dou, S. X. Fish gill inspired crossflow for efficient and continuous collection of spilled oil. ACS Nano 2017, 11, 2477-2485.? Tian, D. L., Zhang, N., Zheng, X., Hou, G. L., Tian, Y.,* Du, Y.,* Jiang, L., Dou, S. X. Fast responsive and controllable liquid transport on a magnetic fluid/nanoarray composite interface. ACS Nano 2016, 10, 6220-6226.? Z. H. Zhao, Y. Z. Ning, X. Jin, S. Ben, J. L. Zha, B. Su, D. L. Tian,* K. S. Liu,* L. Jiang. Molecular-Structure-Induced Under-Liquid Dual Superlyophobic Surfaces. ACS Nano 2020, 14, 14869?14877 Zhang, Q. Y., Li, Y., Yan, Y. F., Zhang, X. F., Tian, D. L.,* Jiang L. Highly flexible monolayered porous membrane with superhydrophilicity-hydrophilicity for unidirectional liquid penetration. ACS Nano 2020, 14, 7287?7296 Zhang, Q. Y., He, L. L., Zhang, X. F., Tian, D. L.,* Jiang, L. Switchable direction of liquid transport via anisotropic microarray surface and thermal Stimuli. ACS Nano 2020, 14, 1436?1444 Tian, D. L., Guo, Z. Y., Wang, Y. L., Li, W. X., Zhang, X. F., Zhai, J., Jiang, L., Photo-tunable underwater oil-adhesion of the micro/nanoscale hierarchical structured ZnO mesh films with switchable contact mode, Adv. Funct. Mater., 2014, 24, 536-542. Ning, Y. Z., Zhang, D., Ben, S., Zhao, Z. H., Zha, J. L., Tian, D. L.* Liu, K. S.,* Jiang, L. An innovative design by single-layer superaerophobic mesh: continuous underwater bubble antibuoyancy collection and transportation. Adv. Funct. Mater. 2020, 30, 1907027 Ben S., Tai, J., Ma, H., Peng, Y., Zhang, Y., Tian, D. L.,* Liu, K. S.,* Jiang, L. Cilia-inspired flexible arrays for intelligent transport of viscoelastic microspheres. Adv. Funct. Mater. 2018, 28, 1706666? Yan, Y. F., Guo, Z. Y., Zhang, X. F., He, L. L., Li, Y., Liu, K. S., Cai, J. H., Tian, D. L.,* Jiang, L. Electric field-induced adhesion switch on a porous structured wire for unidirectional movement of an underwater oil droplet/air bubble. Adv. Funct. Mater. 2018, 28, 1800775.? Tian, D. L.,* He, L. L., Zhang, N., Zheng, X., Dou, Y. H., Zhang, X. F.,* Guo, Z. Y.,* Jiang, L. Electric field and gradient microstructure for cooperative driving of directional motion of underwater oil droplets. Adv. Funct. Mater. 2016, 26, 7986-7992.? Tian, D. L., Chen, Q. W., Nie, F.-Q., Xu, J. J., Song, Y. L., Jiang, L. Patterned wettability transition by photoelectric cooperative and anisotropic wetting for liquid reprography. Adv. Mater. 2009, 21, 3744-3749. Li, Y., He, L. L., Zhang, X. F., Zhang, N., Tian, D. L.* External-field-induced gradient wetting for controllable liquid transport: from movement on the surface to penetration into the surface. Adv. Mater. 2017, 29, 1703802.? Tian, D. L., Song, Y. L., Jiang, L. Patterning of controllable surface wettability for printing techniques. Chem. Soc. Rev., 2013, 42, 5184-5209.?

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