Department of Physics and Electronics, Osaka Prefecture University, Sakai, Osaka 599-8531, Japan.
ACS Appl Mater Interfaces. 2015 May 27;7(20):11002-6. doi: 10.1021/acsami.5b02544. Epub 2015 May 12.
Harnessing a natural power source such as the human body temperature or sunlight should realize ultimate low-power devices. In particular, macroscale and flexible actuators that do not require an artificial power source have tremendous potential. Here we propose and demonstrate electrically powerless polymer-based actuators operated at ambient conditions using a packaging technique in which the stimulating power source is produced by heat from the human body or sunlight. The actuating angle, force, and reliability are discussed as functions of temperature and exposure to sunlight. Furthermore, a wearable device platform and a smart curtain actuated by the temperature of human skin and sunlight, respectively, are demonstrated as the first proof-of-concepts. These nature-powered actuators should realize a new class of ultimate low-power devices.
利用人体温度或阳光等自然能源应该可以实现超低功耗设备。特别是,不需要外部电源的大规模和柔性执行器具有巨大的潜力。在这里,我们提出并展示了一种在环境条件下使用封装技术操作的无需外部电源的基于聚合物的电致动器,其中刺激电源是由人体或阳光产生的热量产生的。讨论了作为温度和暴露于阳光的函数的致动角度、力和可靠性。此外,还展示了分别由人体皮肤温度和阳光驱动的可穿戴设备平台和智能窗帘,作为第一个概念验证。这些自然动力执行器应该可以实现一类新的超低功耗设备。