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宋文龙教授课题组-仿生高分子材料与界面
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宋文龙
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所在单位:
化学学院
学历:
博士研究生毕业
办公地点:
长春市前进大街2699号
性别:
男
学位:
博士
在职信息:
在职
毕业院校:
Jilin University
学科:
高分子化学与物理
学科:
高分子化学与物理
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[1] J. Wang, X. W. Zhang, S. Zhang, J. Y. Kang, Z. C. Guo, B. Y. Feng, H. Zhao, Z. Luo, J. Yu, Wenlong Song,* S. T. Wang,* Semi-convertible Hydrogel Enabled Photo-Responsive Lubrication, Matter, 2021, 4, 675-687.. Matter. 2021,4 :675-687
[2] Haijun Cui, Wenshuo Wang, Lianxin Shi, Wenlong Song,* and Shutao Wang*, Superwettable Surface Engineering in Controlling Cell Adhesion for Emerging Bioapplications, Small Methods, Dec 11, 2020, 4, 2000573. Small Methods. 2020,4 :2000573
[3] Mussel-Inspired Biocoating for Improving the Adhesion of Dental Pulp Stem Cells in Dental Pulp Regeneration, Macromol. Rapid Comm. Dec. 2020, 41, 2000102.. Macromol. Rapid Comm.. 2020 :2000102
[4] Xuewei Zhang, Jian Wang, Hui Jin, Shutao Wang,* Wenlong Song*, Bio-inspired supramolecular lubricating hydrogel induced by shear force, J. Am. Chem. Soc, Mar 2018, 140(9), 3186-3189.
[5] Hao Li, Wenqian Qi, Wenlong Song*, Investigation on the Human Hepatoma HEPG2 Cells Adhesion under the Synergy of Stiffness and Superhydrophobicity, Colloid and Interface Science Communications, 2018, 22, 49-53.
[6] Jian Wang, Hao Li, Haoyang Zou, Chenmiao Wang, Hao Zhang, João F. Mano, and Wenlong Song*, Flexible method for fabricating protein patterns on superhydrophobic platforms controlled by magnetic field, Biomater. Sci., 2017, 5, 408 - 411.
[7] H. Li, D. Z. Hao, J. B. Fan, S. F. Song, X. L. Guo*, Wenlong Song*, M. J. Liu and L. Jiang, A Robust Double-Network Hydrogel with Under Sea Water Superoleophobicity Fabricated via One-Pot, One-Step Reaction, Journal of Materials Chemistry B, 2016, 4, 4662-4666.
[8] C. M. Wang, C. Y. Qiao, Wenlong Song*, H. C. Sun*, Ultrafast Spreading Effect Induced Rapid Cells Trapping into Porous Scaffold with Superhydrophilic Surface, ACS Appl. Mater. Interfaces, Aug 2015, 7(32), 17545-17551.
[9] Wenlong Song*, Adhesion switch on a Gecko-foot inspired smart nanocupule surface, Nanoscale, Sep 2014, 6, 13435–13439.
[10] Wenlong Song*, H. Li, C. M. Wang and B. Yang, Design of Multi-Stage Thermal Responsive Wettable Surface, Adv. Mater. Interfaces, Sep 2014, 1, 1400009.
[11] Wenlong Song, M. B. Oliveira, P. Sher, S. Gil, J. M. Nóbrega and J. F. Mano, Bioinspired methodology for preparing magnetic responsive chitosan beads to be integrated in a tubular bioreactor for biomedical applications, Biomed. Mater. 2013, 8 045008.
[12] 9. Wenlong Song* and J. F. Mano*, Interactions between cells or proteins and surfaces exhibiting extreme wettabilities, Soft Matter, 2013, 11, 2985-2999. (selected as back cover)
[13] 10. C. G. Obeso, M. P. Sousa, Wenlong Song, M. A. Rodriguez-Pérez, B. Bhushan, J. F. Mano, Modification of paper using polyhydroxybutyrate to obtain biomimetic superhydrophobic substrates, Colloids and Surfaces A: Physicochem. Eng. Aspects, 2013, 416, 51-55.
[14] 11. M. B. Oliveira, C. L. Salgado, Wenlong Song and J. F. Mano, Combinatorial On-Chip Study of Miniaturized 3D Porous Scaffolds Using a Patterned Superhydrophobic Platform, Small, 2013, 9(5), 768-778;
[15] 12. B. N. Lourenco, G. Marchioli, Wenlong Song, R. L. Reis, C. A. V. Blitterswijk, M. Karperien, A. V. Apeldoorn and J. F. Mano, Wettability influences cell behavior on superhydrophobic surfaces with different topographies, Biointerphases, 2012, 7, 46.
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