Sekitani Tsuyoshi, Takamiya Makoto, Noguchi Yoshiaki, Nakano Shintaro, Kato Yusaku, Sakurai Takayasu, Someya Takao
Quantum-Phase Electronics Center, School of Engineering, The University of Tokyo, Tokyo 113-8656, Japan.
Nat Mater. 2007 Jun;6(6):413-7. doi: 10.1038/nmat1903. Epub 2007 Apr 29.
The electronics fields face serious problems associated with electric power; these include the development of ecologically friendly power-generation systems and ultralow-power-consuming circuits. Moreover, there is a demand for developing new power-transmission methods in the imminent era of ambient electronics, in which a multitude of electronic devices such as sensor networks will be used in our daily life to enhance security, safety and convenience. We constructed a sheet-type wireless power-transmission system by using state-of-the-art printing technologies using advanced electronic functional inks. This became possible owing to recent progress in organic semiconductor technologies; the diversity of chemical syntheses and processes on organic materials has led to a new class of organic semiconductors, dielectric layers and metals with excellent electronic functionalities. The new system directly drives electronic devices by transmitting power of the order of tens of watts without connectors, thereby providing an easy-to-use and reliable power source. As all of the components are manufactured on plastic films, it is easy to place the wireless power-transmission sheet over desks, floors, walls and any other location imaginable.
电子领域面临着与电力相关的严峻问题;这些问题包括开发生态友好型发电系统和超低功耗电路。此外,在即将到来的环境电子时代,开发新的电力传输方法的需求迫在眉睫,在这个时代,诸如传感器网络等众多电子设备将在我们的日常生活中被用于提高安全性、保障安全和便利性。我们利用先进的电子功能墨水,通过最先进的印刷技术构建了一种片状无线电力传输系统。这得益于有机半导体技术最近的进展;有机材料上化学合成和工艺的多样性导致了一类具有优异电子功能的新型有机半导体、介电层和金属。新系统无需连接器就能传输数十瓦量级的电力,直接驱动电子设备,从而提供了一种易于使用且可靠的电源。由于所有组件都在塑料薄膜上制造,所以很容易将无线电力传输片放置在桌子、地板、墙壁以及任何可以想象到的其他位置上。