Chen Yusheng, Wang Hanlin, Luo Feng, Montes-García Verónica, Liu Zhaoyang, Samorì Paolo
University of Strasbourg, CNRS, ISIS UMR 7006, 8 allée Gaspard Monge, F-67000 Strasbourg, France.
Sci Adv. 2022 Sep 16;8(37):eabq4824. doi: 10.1126/sciadv.abq4824. Epub 2022 Sep 14.
The use of postsynaptic current to drive long-lasting luminescence holds a disruptive potential for harnessing the next-generation of smart displays. Multiresponsive long afterglow emission can be achieved by integrating light-emitting polymers in electric spiked transistors trigged by distinct presynaptic signals inputs. Here, we report a highly effective electric spiked long afterglow organic light-emitting transistor (LAOLET), whose operation relies on a nanofloating gate architecture. Long afterglow emission with reconfigurable brightness and retention time is observed upon applying specific positive gate voltage spiked. Conversely, when negative gate voltage stimulus is applied, these LAOLETs function as click-on display. Interestingly, upon endowing the device with force sensing capabilities, it can operate as a long afterglow pressure sensor that emits long-lasting green light subsequently to a controlled extrusion action.
利用突触后电流驱动持久发光对于开发下一代智能显示器具有颠覆性潜力。通过将发光聚合物集成到由不同突触前信号输入触发的电尖峰晶体管中,可以实现多响应长余辉发射。在此,我们报道了一种高效的电尖峰长余辉有机发光晶体管(LAOLET),其操作依赖于纳米浮栅架构。在施加特定的正栅极电压尖峰时,观察到具有可重构亮度和保留时间的长余辉发射。相反,当施加负栅极电压刺激时,这些LAOLET用作点击式显示器。有趣的是,当赋予该器件力传感能力时,它可以作为长余辉压力传感器运行,在受控挤压作用后发射持久的绿光。