Li Peng, Zhang Dongzhi, Liu Jingjing, Chang Hongyan, Sun Yan'e, Yin Nailiang
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University , Beijing 100084, China.
College of Information and Control Engineering, China University of Petroleum (East China) , Qingdao 266580, China.
ACS Appl Mater Interfaces. 2015 Nov 11;7(44):24396-402. doi: 10.1021/acsami.5b07712. Epub 2015 Oct 30.
Black phosphorus (BP) is one of the most attractive graphene analogues, and its properties make it a promising nanomaterial for chemical sensing. However, mono- and few-layer BP flakes are reported to chemically degrade rapidly upon exposure to ambient conditions. Therefore, little is known about the performance and sensing mechanism of intrinsic BP, and chemical sensing of intrinsic BP with acceptable air stability remains only theoretically explored. Here, we experimentally demonstrated the first air-stable high-performance BP sensor using ionophore coating. Ionophore-encapsulated BP demonstrated significantly improved air stability. Its performance and sensing mechanism for trace ion detection were systematically investigated. The BP sensors were able to realize multiplex ion detection with superb selectivity, and sensitive to Pb(2+) down to 1 ppb. Additionally, the time constant for ion adsorption extracted was only 5 s. The detection limit and response rate of BP were both superior to those of graphene based sensors. Moreover, heavy metal ions can be effectively detected over a wide range of concentration with BP conductance change following the Langmuir isotherm for molecules adsorption on surface. The simplicity of this ionophore-encapsulate approach provides a route for achieving air-stable intrinsic black phosphorus sensors that may stimulate further fundamental research and potential applications.
黑磷(BP)是最具吸引力的石墨烯类似物之一,其特性使其成为一种有前途的用于化学传感的纳米材料。然而,据报道,单层和少数层BP薄片在暴露于环境条件下时会迅速发生化学降解。因此,关于本征BP的性能和传感机制知之甚少,并且具有可接受的空气稳定性的本征BP的化学传感仅在理论上进行了探索。在此,我们通过实验展示了首个使用离子载体涂层的空气稳定型高性能BP传感器。离子载体封装的BP表现出显著提高的空气稳定性。系统地研究了其对痕量离子检测的性能和传感机制。BP传感器能够以卓越的选择性实现多重离子检测,对Pb(2+)的检测下限低至1 ppb。此外,提取的离子吸附时间常数仅为5秒。BP的检测限和响应速率均优于基于石墨烯的传感器。此外,对于表面分子吸附遵循朗缪尔等温线的BP电导变化,重金属离子可以在很宽的浓度范围内被有效检测。这种离子载体封装方法的简单性为实现空气稳定的本征黑磷传感器提供了一条途径,这可能会激发进一步的基础研究和潜在应用。