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个人简介

2009年毕业于中国科学院国家纳米科学中心物理化学专业,获理学博士学位,师从中国科学院院士江雷教授,曾获得中国科学院国家纳米科学中心优秀博士论文等。2013年入选北京市青年英才计划20143-20153月,澳大利亚University of Wollongong 国家留学基金委公派访问学者,导师窦士学教授。目前,主要从事教学科研工作。在教学上,主讲《大学化学》,并负责《物理化学实验》课程;在科研上,研究工作集中在光、电、磁功能微纳多尺度材料的构筑及其界面性能研究,取得了一系列创新性研究成果,在智能流体传输、功能材料图案化、液体显示、微流体检测、微电子技术等方面有重要的应用。目前,主持国家自然科学基金3项(青年基金1项、面上基金2项),北京市自然科学基金2项,中央高校基础科研业务费3项(培育基金1项,重点项目2项),以科研骨干参与973计划项目1项,并参与了多项国家重点基金的研究工作。在SCI 权威期刊如 Chem. Soc. Rev., Adv. Mater., Adv. Funct. Mater., ACS Nano等上发表论文近三十篇,其中多次以封面发表。申请国家发明专利11项,其中8项已获授权,书写英文专著2篇。


培养的多名研究生获得国家奖学金等荣誉。每年招收研究生1-2名,欢迎报考。


代表性论文如下:

1. Tian, D. L., Song, Y. L. & Jiang, L.

Patterning of controllable surface wettability for printing techniques. Chem.

Soc. Rev., 2013, 42, 5184-5209. (Back cover, IF: 33.383)

2. 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. (IF: 17.493)

3. 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. (IF: 13.334)

4. 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, in Press.

5. 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. (Back cover,

IF: 11.382)

6. Tian, D. L., Zhai J., Song, Y. L. &

Jiang, L. Photoelectric cooperative induced wetting on aligned nanopore arrays

for liquid reprography. Adv. Funct. Mater. 2011, 21, 4519-4526. (IF: 11.805)

7. 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. (IF: 11.805)

8. Zheng, X., Guo, Z. Y., Tian, D. L.*,

Zhang X. F. & Jiang, L. Electric field induced switchable wettability to

water on the polyaniline membrane and oil/water separation. Adv. Mater. Interfaces

2016, 3, 1600461. (IF: 3.365)

9. Guo, Z. Y., Zhang, X. F., Zheng, X., Liu,

Z. Y., Cai, J. H., Tian, D. L.*, Li, W. X., Zhai, J. Song Y. L., Jiang, L.,

Patterned liquid permeation through the TiO2 nanotube array coated

Ti mesh by photoelectric cooperation for liquid printing, J. Mater. Chem. A,

2014, 2, 2498-2503. (Front cover,IF: 7.443)

10. Tian, D. L., Zhang, X. F., Tian, Y., Wu,

Y., Wang, X., Zhai, J., Song, Y. L. & Jiang, L. Photo-induced water-oil

separation based on switchable superhydrophobicity-superhydrophilicity and

underwater superoleophobicity of the aligned ZnO nanorod array-coated mesh

films. J. Mater. Chem., 2012, 22, 19652-19657. (IF: 6.626)

11. Guo, Z. Y., Zheng, X., Tian, D. L.*,

Song, Y. L., Zhai, J., Zhang, X. F., Li, W. X., Wang, X. L., Dou, S. X., Jiang,

L., Photoelectric cooperative patterning of liquid permeation on the micro/nano

hierarchically structured mesh film with low adhesion, Nanoscale, 2014, 6 (21),

12822-12827. (IF: 7.394)

12. Zheng, X., Guo, Z. Y., Tian, D. L.*,

Zhang X. F., Li W. X., Jiang, L., Underwater self-cleaning scaly fabric

membrane for oily water separation, ACS Appl. Mater. Interfaces, 2015, 7 (7),

4336-4343. (IF: 6.732)

13. Tian, D. L., Zhang, X. F., Zhai, J.

& Jiang, L. Photo-controllable water permeation on the micro/nanoscale

hierarchical structured ZnO mesh films. Langmuir 2011, 27, 4265-4270.(IF: 4. 574)

14. Tian, D. L., Zhang, X. F., Wang, X.,

Zhai, J. & Jiang, L. Micro/nanoscale hierarchical structured ZnO mesh film

for separation of water and oil. Phys. Chem. Chem. Phys. 2011, 13, 14606-14610.

(IF: 4.4 93)

15. Feng, H. F., Xu, X., Hao, W. C., Du, Y.,

Tian, D. L.*, Jiang, L., Magnetic field actuated manipulation and transfer of

oil droplets on a stable underwater superoleophobic surface, Phys. Chem. Chem.

Phys. 2016, 18, 16202-16207. (IF: 4.4 93)