Center for Nanochemistry, Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering , Peking University , Beijing 100871 , China.
School of Chemistry, Physics and Mechanical Engineering Faculty , Queensland University of Technology , Garden Point Campus , Brisbane , Queensland 4001 , Australia.
ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9679-9687. doi: 10.1021/acsami.8b00556. Epub 2018 Mar 12.
Few-layer black phosphorus (BP) which exhibits excellent optical and electronic properties, has great potential applications in nanodevices. However, BP inevitably suffers from the rapid degradation in ambient air because of the high reactivity of P atoms with oxygen and water, which greatly hinders its wide applications. Herein, we demonstrate the electrostatic functionalization as an effective way to simultaneously enhance the stability and dispersity of aqueous phase exfoliated few-layer BP. The poly dimethyldiallyl ammonium chloride (PDDA) is selected to spontaneously and uniformly adsorb on the surface of few-layer BP via electrostatic interaction. The positive charge-center of the N atom of PDDA, which passivates the lone-pair electrons of P, plays a critical role in stabilizing the BP. Meanwhile, the PDDA could serve as hydrophilic ligands to improve the dispersity of exfoliated BP in water. The thinner PDDA-BP nanosheets can stabilize in both air and water even after 15 days of exposure. Finally, the uniform PDDA-BP-polymer film was used as a saturable absorber to realize passive mode-locking operations in a fiber laser, delivering a train of ultrafast pulses with the duration of 1.2 ps at 1557.8 nm. This work provides a new way to obtain highly stable few-layer BP, which shows great promise in ultrafast optics application.
少层黑磷 (BP) 具有优异的光学和电子性能,在纳米器件中有很大的应用潜力。然而,由于 P 原子与氧和水的高反应性,BP 不可避免地会在环境空气中迅速降解,这极大地阻碍了它的广泛应用。在此,我们证明静电功能化为同时提高水相剥离少层 BP 的稳定性和分散性的有效方法。选择聚二甲基二烯丙基氯化铵 (PDDA) 通过静电相互作用自发且均匀地吸附在少层 BP 的表面上。PDDA 的 N 原子的正电荷中心,使 P 的孤对电子钝化,在稳定 BP 方面起着关键作用。同时,PDDA 可以作为亲水配体来提高剥离 BP 在水中的分散性。即使在暴露 15 天后,更薄的 PDDA-BP 纳米片也能在空气和水中稳定存在。最后,将均匀的 PDDA-BP-聚合物薄膜用作光纤激光器中的可饱和吸收体,在 1557.8nm 处实现了被动锁模操作,产生了持续时间为 1.2ps 的超快脉冲序列。这项工作为获得高稳定性的少层 BP 提供了一种新方法,在超快光学应用中具有广阔的前景。