Zeng Fei, Lu Siheng, Li Sizhao, Li Xiaojun, Pan Feng
Laboratory of Advanced Materials (MOE), School of Materials Science and Engineering, Tsinghua University, Beijing, People's Republic of China.
PLoS One. 2014 Sep 22;9(9):e108316. doi: 10.1371/journal.pone.0108316. eCollection 2014.
Pt/poly(3-hexylthiophene-2,5-diyl)/polyethylene oxide + Li+/Pt hetero junctions were fabricated, and their pulse responses were studied. The direct current characteristics were not symmetric in the sweeping range of ±2 V. Negative differential resistance appeared in the input range of 0 to 2 V because of de-doping (or reduction) in the side with the semiconductor layer. The device responded stably to a train of pulses with a fixed frequency. The inverse current after a pulse was related to the back-migrated ions. Importantly, the weight calculated based on the inverse current strength, was depressed during low-frequency stimulations but was potentiated during high-frequency stimulations when pulses were positive. Therefore, frequency selectivity was first observed in a semiconducting polymer/electrolyte hetero junction. Detailed analysis of the pulse response showed that the input frequency could modulate the timing of ion doping, de-doping, and re-doping at the semiconducting polymer/electrolyte interface, which then resulted in the frequency selectivity. Our study suggests that the simple redox process in semiconducting polymers can be modulated and used in signal handling or the simulation of bio-learning.
制备了Pt/聚(3-己基噻吩-2,5-二亚基)/聚环氧乙烷+Li⁺/Pt异质结,并研究了它们的脉冲响应。在±2 V的扫描范围内,直流特性不对称。由于半导体层一侧的去掺杂(或还原),在0至2 V的输入范围内出现了负微分电阻。该器件对固定频率的一系列脉冲有稳定响应。脉冲后的反向电流与反向迁移的离子有关。重要的是,基于反向电流强度计算的权重在低频刺激期间降低,但在脉冲为正时的高频刺激期间增强。因此,首次在半导体聚合物/电解质异质结中观察到频率选择性。对脉冲响应的详细分析表明,输入频率可以调节半导体聚合物/电解质界面处离子掺杂、去掺杂和再掺杂的时间,进而导致频率选择性。我们的研究表明,半导体聚合物中的简单氧化还原过程可以被调节并用于信号处理或生物学习模拟。