1. Converting chemical energy into electricity through a functionally cooperating device with diving-surfacing cycles. Adv. Mater.2014, 26, 7059-7063.
Mengmeng Song, Mengjiao Cheng, Guannan Ju, Yajun Zhang, Feng Shi*
2. Macroscopic supramolecular assembly of rigid building blocks through a flexible spacing coating. Adv. Mater.2014, 26, 3009-3013.
Mengjiao Cheng, Feng Shi*, Jianshu Li, Zaifu Lin, Chao Jiang, Meng Xiao, Liqun Zhang, Wantai Yang*, Toshio Nishi
3. Bell-shaped superhydrophilic-superhydrophobic-superhydrophilic double transformation on a pH-responsive smart surface. Adv. Mater.2014, 26, 306-310.
Mengjiao Cheng, Qian Liu, Guannan Ju, Yajun Zhang, Lei Jiang, Feng Shi*
4. Smart transportation between three phases through a stimulus-responsive functional cooperating device. Adv. Mater.2013, 25, 2915-2919.
Guannan Ju, Mengjiao Cheng, Meng Xiao, Jianmei Xu, Kai Pan, Yajun Zhang,* Feng Shi*
5. Diving–surfacing cycle within a stimulus-responsive smart device towards developing functionally cooperating systems. Adv. Mater.2010, 22, 5125-5128
Yongfeng Gao, Mengjiao Cheng, Baoling Wang, Zeguo Feng, Feng Shi*
6. Precise macroscopic supramolecular assembly by combining spontaneous locomotion driven by the marangoni effect and molecular recognition. Angew. Chem. Int. Ed.2015, 54, 8952-8956.
Meng Xiao, Yiming Xian, Feng Shi*
7. Diving-surfacing smart locomotion driven by the co2-forming reaction and its application on mini-generator. Adv. Funct. Mater.2015, Accepted. Lina Zhang, Mengmeng Song, Meng Xiao, Feng Shi*
8. Macroscopic supramolecular assembly to fabricate 3D ordered structures: towards potential tissue scaffolds with targeted modification. Adv. Funct. Mater.2015, ASAP, DOI: 10.1002/adfm.201503366. Mengjiao Cheng, Yue Wang, Lingling Yu, Haijia Su, Weidong Han,* Zaifu Lin, Jianshu Li, Haojie Hao, Chuan Tong, Xiaolei Li, Feng Shi*
9. pH-Responsive round-way motions of a smart device through integrating two types of chemical actuator in one smart system. Adv. Funct. Mater.2015, 25, 5786-5793. Lingling Yu, Mengjiao Cheng, Mengmeng Song, Dequn Zhang, Meng Xiao, Feng Shi*
10. Design of UV-responsive micro-actuator on smart device towards light induced on-off-on motion. NPG Asia Mater.2014, 6, e128.
Meng Xiao, Chao Jiang, Feng Shi*
11. A pH-responsive smart surface for the continuous separation of oil/water/oil ternary mixtures. NPG Asia Mater. 2014, 6, e111.
Guannan Ju, Mengjiao Cheng, Feng Shi*
12. Surface adhesive force: a metric describing the drag-reducing effects of superhydrophobic coatings. Small2015, 11, 1665-1671.
Mengjiao Cheng, Mengmeng Song, Hongyu Dong, Feng Shi*
13. Supramolecular assembly of macroscopic building blocks through self-propelled locomotion by dissipating chemical energy. Small2014, 10, 3907-3911.
Mengjiao Cheng, Guannan Ju, Yingwei Zhang, Mengmeng Song, Yajun Zhang, Feng Shi*
14. pH-Responsive on-off motion of a superhydrophobic boat: towards the design of a minirobot. Small2014, 10, 859-865.
Meng Xiao, Xianpeng Guo, Mengjiao Cheng, Guannan Ju, Yajun Zhang, Feng Shi*
15. Combining the marangoni effect and the ph-responsive superhydrophobicity–superhydrophilicity transition to biomimic the locomotion process of the beetles of Genus Stenus. Small2013, 9, 2509-2514.
Meng Xiao, Mengjiao Cheng, Yajun Zhang*, Feng Shi*
◇ 本人從事的主要研究方向:
超分子組裝
◇ :在國內(nèi)外核心期刊上發(fā)表學(xué)術(shù)論文情況
論文題目
刊物名稱
刊物國家
收錄情況
卷期
排名
Converting chemical energy into electricity through a functionally cooperating device with diving-surfacing cycles
Adv. Mater.
國外
SCI
2014, 26, 7059-7063
通訊
Macroscopic supramolecular assembly of rigid building blocks through a flexible spacing coating
Adv. Mater.
國外
SCI
2014, 26, 3009-3013
通訊
Bell-shaped superhydrophilic-superhydrophobic-superhydrophilic double transformation on a pH-responsive smart surface
Adv. Mater.
國外
SCI
2014, 26, 306-310
通訊
Smart transportation between three phases through a stimulus-responsive functional cooperating device
Adv. Mater.
國外
SCI
2013, 25, 2915-2919
通訊
Diving–surfacing cycle within a stimulus-responsive smart device towards developing functionally cooperating systems