Abstract:
PURPOSE: A non-metallic organic actuator and a manufacturing method thereof are provided to economically produce the non-metallic organic actuator by avoid using an expensive metal, and to secure the excellent uniformity and low pressure drivability. CONSTITUTION: A non-metallic organic actuator is formed with a highly conductive polyaniline and an ion-conductive polymer. The ion-conductive polymer is a fluoro-polymer applied with more than one ionic group selected from the group consisting of a sulfonic acid group and a carbonyl group. The non-metallic organic actuator comprises a first layer, a second layer, and a third layer inserted in between the first and second layers.
Abstract:
PURPOSE: A non-metallic organic actuator and a manufacturing method thereof are provided to secure the reliability of the actuator by simply manufacture an electrode. CONSTITUTION: A manufacturing method of a non-metallic organic actuator comprises the following steps: forming a high-conductivity polyaniline film using a high-conductivity polyaniline solution obtained by dissolving a high-conductivity polyaniline particle and camporsulfonic acid to meta-cresol; processing an ion conductive polymer with a hydrogen peroxide solution, a hydrochloric acid solution, and water, to form an ion conductive polymer film; locating the high-conductivity polyaniline film to the lower and upper side of the ion conductive polymer film, and compressing; and dipping the compressed films to a camphor sulfonic acid solution.
Abstract:
본 발명은 고전도성 폴리아닐린과 이온 전도성 고분자의 복합체로 이루어진 유기 복합체층을 포함하는 비금속 유기 엑추에이터 소자 및 그 제조방법에 관한 것으로서, 고전도성 폴리아닐린 입자가 이온 전도성 고분자 필름에 분산되어 있는 형태의 복합체층을 포함하고 있어 종래 이온 전도성 고분자 금속 복합체(IPMC)의 금속 전극을 유기물인 고전도성 폴리아닐린으로 대체한 완전 유기물 구동체 및 그 제조방법에 관한 발명이다. 고전도성 폴리 아닐린, 이온 전도성 고분자 금속 복합체(IPMC), 전극 대체, 비금속 유기 엑추에이터
Abstract:
PURPOSE: An electroactive polymer vibrator, a manufacturing method thereof, and a thrombus dissolving method using the same are provided to minimize the amount of inputting a thrombus dissolving agent, thereby reducing thrombus dissolving risk due to drugs. CONSTITUTION: A plurality of electrode coating layers are formed on a portion of a columnar laminate. A capsule coating layer capsulates the electrode coating layers. An electroactive polymer is selected from either one of a conductive polymer and a dielectric polymer. The electroactive polymer is selected from polyaniline, polypyrrole, polysulfone, polyacetylene, and a combination thereof. The dielectric polymer is selected from polyacrylate, silicon, polyvinylidene, and a combination thereof.