Eom Wonsik, Shin Hwansoo, Ambade Rohan B, Lee Sang Hoon, Lee Ki Hyun, Kang Dong Jun, Han Tae Hee
Department of Organic and Nano Engineering, Hanyang University, Seoul, 04763, Republic of Korea.
Research Institute of Industrial Science, Hanyang University, Seoul, 04763, Republic of Korea.
Nat Commun. 2020 Jun 4;11(1):2825. doi: 10.1038/s41467-020-16671-1.
TiCT MXene is an emerging class of two-dimensional nanomaterials with exceptional electroconductivity and electrochemical properties, and is promising in the manufacturing of multifunctional macroscopic materials and nanomaterials. Herein, we develop a straightforward, continuously controlled, additive/binder-free method to fabricate pure MXene fibers via a large-scale wet-spinning assembly. Our MXene sheets (with an average lateral size of 5.11 μm) are highly concentrated in water and do not form aggregates or undergo phase separation. Introducing ammonium ions during the coagulation process successfully assembles MXene sheets into flexible, meter-long fibers with very high electrical conductivity (7,713 S cm). The fabricated MXene fibers are comprehensively integrated by using them in electrical wires to switch on a light-emitting diode light and transmit electrical signals to earphones to demonstrate their application in electrical devices. Our wet-spinning strategy provides an approach for continuous mass production of MXene fibers for high-performance, next-generation, and wearable electronic devices.
TiCT MXene是一类新兴的二维纳米材料,具有卓越的导电性和电化学性能,在多功能宏观材料和纳米材料的制造方面具有广阔前景。在此,我们开发了一种直接、连续可控、无添加剂/无粘合剂的方法,通过大规模湿法纺丝组装来制备纯MXene纤维。我们的MXene片层(平均横向尺寸为5.11μm)在水中高度浓缩,不会形成聚集体或发生相分离。在凝固过程中引入铵离子成功地将MXene片层组装成具有非常高电导率(7713 S/cm)的柔性、米长纤维。通过将制备的MXene纤维用于电线中以点亮发光二极管灯并将电信号传输到耳机,从而全面展示了它们在电气设备中的应用。我们的湿法纺丝策略为高性能、下一代和可穿戴电子设备的MXene纤维连续大规模生产提供了一种方法。