School of Electrical Engineering, Korea University, Anam-ro 145, Seongbuk-gu, Seoul, 02841, South Korea.
Computational Electronics and Nanoscience Research Laboratory, School of Nanoscience and Biotechnology, Shivaji University, Kolhapur, 416004, India.
Adv Sci (Weinh). 2023 Jul;10(19):e2300433. doi: 10.1002/advs.202300433. Epub 2023 May 3.
Hybrid systems have attracted significant attention within the scientific community due to their multifunctionality, which has resulted in increasing demands for wearable electronics, green energy, and miniaturization. Furthermore, MXenes are promising two-dimensional materials that have been applied in various areas due to their unique properties. Herein, a flexible, transparent, and conductive electrode (FTCE) based on a multilayer hybrid MXene/Ag/MXene structure that can be applied to realize an inverted organic solar cell (OSC) with memory and learning functionalities is reported. This optimized FTCE exhibits high transmittance (84%), low sheet resistance (9.7 Ω sq ), and reliable operation (even after 2000 bending cycles). Moreover, the OSC using this FTCE achieves a power conversion efficiency of 13.86% and sustained photovoltaic performance, even after hundreds of switching cycles. The fabricated memristive OSC (MemOSC) device also exhibits reliable resistive switching behavior at low operating voltages of 0.60 and -0.33 V (similar to biological synapses), an excellent ON/OFF ratio (10 ), stable endurance performance (4 × 10 ), and memory retention properties (10 s). Moreover, the MemOSC device can mimic synaptic functionalities on a biological time scale. Thus, MXene can potentially be used as an electrode for highly efficient OSCs with memristive functions for future intelligent solar cell modules.
混合系统因其多功能性而在科学界引起了广泛关注,这导致对可穿戴电子设备、绿色能源和小型化的需求不断增加。此外,MXenes 是一种很有前途的二维材料,由于其独特的性质,已被应用于各个领域。在此,报道了一种基于多层混合 MXene/Ag/MXene 结构的柔性、透明、导电电极(FTCE),可应用于实现具有记忆和学习功能的倒置有机太阳能电池(OSC)。这种优化的 FTCE 表现出高透光率(84%)、低面电阻(9.7 Ω sq)和可靠的工作性能(即使经过 2000 次弯曲循环)。此外,使用这种 FTCE 的 OSC 实现了 13.86%的功率转换效率和可持续的光伏性能,即使经过数百次开关循环。所制备的忆阻 OSC(MemOSC)器件在 0.60 和-0.33 V 的低工作电压下也表现出可靠的电阻开关行为(类似于生物突触),具有优异的 ON/OFF 比(10)、稳定的耐久性性能(4×10)和记忆保持特性(10 s)。此外,MemOSC 器件可以在生物时间尺度上模拟突触功能。因此,MXenes 有可能被用作具有忆阻功能的高效 OSCs 的电极,用于未来的智能太阳能电池模块。