Department of Applied Physics, Korea University , Sejong 339-700, Korea.
ACS Appl Mater Interfaces. 2017 Aug 16;9(32):27073-27082. doi: 10.1021/acsami.7b07549. Epub 2017 Aug 4.
In this study, we demonstrate a high-performance solid polymer electrolyte (SPE) atomic switching device with low SET/RESET voltages (0.25 and -0.5 V, respectively), high on/off-current ratio (10), excellent cyclic endurance (>10), and long retention time (>10 s), where poly-4-vinylphenol (PVP)/poly(melamine-co-formaldehyde) (PMF) is used as an SPE layer. To accomplish these excellent device performance parameters, we reduce the off-current level of the PVP/PMF atomic switching device by improving the electrical insulating property of the PVP/PMF electrolyte through adjustment of the number of cross-linked chains. We then apply a titanium buffer layer to the PVP/PMF switching device for further improvement of bipolar switching behavior and device stability. In addition, we first implement SPE atomic switch-based logic AND and OR circuits with low operating voltages below 2 V by integrating 5 × 5 arrays of PVP/PMF switching devices on the flexible substrate. In particular, this low operating voltage of our logic circuits was much lower than that (>5 V) of the circuits configured by polymer resistive random access memory. This research successfully presents the feasibility of PVP/PMF atomic switches for flexible integrated circuits for next-generation electronic applications.
在这项研究中,我们展示了一种具有高性能的固态聚合物电解质(SPE)原子开关器件,其具有低置位/复位电压(分别为 0.25V 和-0.5V)、高导通/截止电流比(10)、出色的循环耐久性(>10)和长保持时间(>10s),其中聚 4-乙烯基苯酚(PVP)/聚(三聚氰胺-甲醛)(PMF)用作 SPE 层。为了实现这些优异的器件性能参数,我们通过调整交联链的数量来提高 PVP/PMF 电解质的电绝缘性能,从而降低 PVP/PMF 原子开关器件的截止电流水平。然后,我们在 PVP/PMF 开关器件上施加钛缓冲层,以进一步改善双极开关行为和器件稳定性。此外,我们首次通过在柔性衬底上集成 5×5 阵列的 PVP/PMF 开关器件,实现了工作电压低于 2V 的基于 SPE 原子开关的逻辑与和或门电路。特别是,我们逻辑电路的低工作电压远低于由聚合物电阻式随机存取存储器配置的电路(>5V)。这项研究成功地展示了 PVP/PMF 原子开关在下一代电子应用的柔性集成电路中的可行性。