Advanced Research Division, Panasonic Corporation , 1006 Kadoma, Osaka 571-8501, Japan.
ACS Appl Mater Interfaces. 2017 Feb 15;9(6):5056-5061. doi: 10.1021/acsami.6b15662. Epub 2017 Feb 2.
We demonstrated the field-effect conductivity modulation of a gold thin film by all-solid-state electric-double-layer (EDL) gating at room temperature using an epitaxially grown oxide fast lithium conductor, LaLiTiO (LLT), as a solid electrolyte. The linearly increasing gold conductivity with increasing gate bias demonstrates that the conductivity modulation is indeed due to carrier injection by EDL gating. The response time becomes exponentially faster with increasing gate bias, a result of the onset of nonlinear ionic transportation. This nonlinear dynamic response indicates that the ionic motion-driven device can be much faster than would be estimated from a linear ionic transport model.
我们通过使用外延生长的氧化物快锂离子导体 LaLiTiO(LLT)作为固态电解质,在室温下展示了金薄膜的场效应电双层(EDL)门控的电导率调制。随着栅极偏压的增加,金的电导率呈线性增加,这表明电导率调制确实是由 EDL 门控引起的载流子注入引起的。随着栅极偏压的增加,响应时间呈指数级加快,这是由于非线性离子输运的开始。这种非线性动态响应表明,离子运动驱动的器件可以比从线性离子输运模型估计的速度快得多。