High Breakdown Field Dielectric Elastomer Actuators Using Encapsulated Polyaniline as High Dielectric Constant Filler

被引:259
|
作者
Molberg, Martin [1 ,2 ]
Crespy, Daniel [3 ]
Rupper, Patrick [4 ]
Nueesch, Frank [1 ]
Manson, Jan-Anders E. [2 ]
Loewe, Christiane [1 ]
Opris, Dorina M. [1 ]
机构
[1] EMPA, Swiss Fed Inst Mat Testing & Res, Funct Polymers Lab, CH-8600 Dubendorf, Switzerland
[2] Ecole Polytech Fed Lausanne, Lab Technol Composites & Polymeres LTC, CH-1015 Lausanne, Switzerland
[3] EMPA, Swiss Fed Inst Mat Testing & Res, Lab Protect & Physiol, CH-9014 St Gallen, Switzerland
[4] EMPA, Swiss Fed Inst Mat Testing & Res, Adv Fibers Lab, CH-9014 St Gallen, Switzerland
关键词
POLYMER COMPOSITE FILMS; ELECTROMECHANICAL RESPONSES; ELECTRICAL-PROPERTIES; STRAIN; NANOCOMPOSITE; NANOCAPSULES; FABRICATION; PERCOLATION; BEHAVIOR;
D O I
10.1002/adfm.201000486
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A novel method allowing rapid production of reliable composites with increased dielectric constant and high dielectric strength for dielectric elastomer actuators (DEA) is reported. The promising approach using composites of conductive particles and insulating polymers generally suffers from low breakdown fields when applied to DEA devices. The present publication shows how to overcome this deficiency by using conductive polyaniline (PAN I) particles encapsulated into an insulating polymer shell prior to dispersion. PANI particles are encapsulated using miniemulsion polymerization (MP) of divinylbenzene (DVB). The encapsulation process is scaled up to approximately 20 g particles per batch. The resulting particles are used as high dielectric constant (e) fillers. Composites in a polydimethylsiloxane (PDMS) matrix are prepared and the resulting films characterized by dielectric spectroscopy and tensile tests, and evaluated in electromechanical actuators. The composite films show a more than threefold increase in epsilon', breakdown field strengths above 50 V mu m(-1), and increased strain at break. These novel materials allow tuning the actuation strain or stress output and have potential as materials for energy harvesting.
引用
收藏
页码:3280 / 3291
页数:12
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