Liu Yong, Tian Yumiao, Liu Fangmeng, Gu Tianyi, Wang Bin, He Junming, Wang Chen, Meng Xing, Sun Peng, Lu Geyu
State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.
Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), College of Physics, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.
Adv Sci (Weinh). 2024 Sep;11(33):e2404178. doi: 10.1002/advs.202404178. Epub 2024 Jul 1.
2D transition metal borides (MBenes) with abundant surface terminals hold great promise in molecular sensing applications. However, MBenes from etching with fluorine-containing reagents present inert -fluorine groups on the surface, which hinders their sensing capability. Herein, the multilayer fluorine-free MoBT MBene (where T represents O, OH, and Cl) with hydrophilic structure is prepared by a hydrothermal-assisted hydrochloric acid etching strategy based on guidance from the first-principle calculations. Significantly, the fluorine-free MoBT-based humidity sensor is fabricated and demonstrates low resistance and excellent humidity performance, achieving a response of 90% to 98%RH and a high resolution of 1%RH at room temperature. By combining the experimental results with the first-principles calculations, the interactions between MoBT and HO, including the adsorption and intercalation of HO, are understood first in depth. Finally, the portable humidity early warning system for real-time monitoring and early warning of infant enuresis and back sweating illustrates its potential for humidity sensing applications. This work not only provides guidance for preparation of fluorine-free MBenes, but also contributes to advancing their exploration in sensing applications.
具有丰富表面端基的二维过渡金属硼化物(MBenes)在分子传感应用中具有巨大潜力。然而,用含氟试剂蚀刻得到的MBenes在表面存在惰性氟基团,这阻碍了它们的传感能力。在此,基于第一性原理计算的指导,通过水热辅助盐酸蚀刻策略制备了具有亲水结构的多层无氟MoBT MBene(其中T代表O、OH和Cl)。值得注意的是,制备了基于无氟MoBT的湿度传感器,其表现出低电阻和优异的湿度性能,在室温下对98%RH的响应为90%,分辨率高达1%RH。通过将实验结果与第一性原理计算相结合,首次深入了解了MoBT与H₂O之间的相互作用,包括H₂O的吸附和嵌入。最后,用于实时监测和预警婴儿尿床和背部出汗的便携式湿度预警系统展示了其在湿度传感应用中的潜力。这项工作不仅为无氟MBenes的制备提供了指导,也有助于推动它们在传感应用中的探索。