1 |
Stimuli-Responsive Polymers: Fundamental Considerations and Applications Gao Y, Wei M, Li X, Xu W, Ahiabu A, Perdiz J, Liu Z, Serpe M Macromolecular Research, 25(6), 513, 2017 |
2 |
Sulfur and Nitrogen Co-Doped Graphene Electrodes for High-Performance Ionic Artificial Muscles Kotal M, Kim J, Kim KJ, Oh IK Advanced Materials, 28(8), 1610, 2016 |
3 |
Dry-Type Artificial Muscles Based on Pendent Sulfonated Chitosan and Functionalized Graphene Oxide for Greatly Enhanced Ionic Interactions and Mechanical Stiffness Jeon JH, Cheedarala RK, Kee CD, Oh IK Advanced Functional Materials, 23(48), 6007, 2013 |
4 |
Effect of nucleation time on bending response of ionic polymer-metal composite actuators Kim S, Hong S, Choi YY, Song H, No K Electrochimica Acta, 108, 547, 2013 |
5 |
Morphing Soft Magnetic Composites Nguyen VQ, Ahmed AS, Ramanujan RV Advanced Materials, 24(30), 4041, 2012 |
6 |
A Novel Electromechanical Actuation Mechanism of a Carbon Nanotube Fiber Guo WH, Liu C, Zhao FY, Sun XM, Yang ZB, Chen T, Chen XL, Qiu LB, Hu XH, Peng HS Advanced Materials, 24(39), 5379, 2012 |
7 |
Biomimetic electrochemistry from conducting polymers. A review Artificial muscles, smart membranes, smart drug delivery and computer/neuron interfaces Otero TF, Martinez JG, Arias-Pardilla J Electrochimica Acta, 84, 112, 2012 |
8 |
Characterization of the movement of polypyrrole-dodecylbenzenesulfonate-perchlorate/tape artificial muscles. Faradaic control of reactive artificial molecular motors and muscles Valero L, Arias-Pardilla J, Cauich-Rodriguez J, Smit MA, Otero TF Electrochimica Acta, 56(10), 3721, 2011 |
9 |
Sulfonated polystyrene-based ionic polymer.metal composite (IPMC) actuator Luqman M, Lee JW, Moona KK, Yoo YT Journal of Industrial and Engineering Chemistry, 17(1), 49, 2011 |
10 |
Electromechanical behavior of fully plastic actuators based on bucky gel containing various internal ionic liquids Takeuchi I, Asaka K, Kiyohara K, Sugino T, Terasawa N, Mukai K, Fukushima T, Aida T Electrochimica Acta, 54(6), 1762, 2009 |