College of Science, Heilongjiang Bayi Agricultural University, Daqing 163319, PR China.
J Nanosci Nanotechnol. 2021 Sep 1;21(9):4786-4791. doi: 10.1166/jnn.2021.19325.
Compared with bulk material-based sensors, functional sensors fabricated with nanomaterials have many advantages, such as high sensitivity, multifunctional integration, low power-dissipation, and low cost. Black phosphorus (BP) is a two-dimensional (2D) crystal material, which has a higher molecular adsorption energy, tunable direct band gap, high carrier mobility, ambipolar characteristics, and high current on/off ratio. In this paper, BP bulk was ground into powder, and then the powder was dispersed in dimethylformamide (DMF) to obtain two-dimensional BP nanosheets solution. Afterwards, the black phosphorus nanosheets and H₂PtCl solution were mixed to obtain the Pt functionalized BP nanocomposite by one-step reduction method. Pt nanoparticles were dispersed on the surface of BP nanosheets with highly uniform size. The Pt functionalized BP nanocomposite exhibited a high response of 2.19 to 10 ppm NO in a short period of 1.93 s at room temperature. The detection limit was as low as 30 ppb. The Pt functionalized BP nanocomposite will be useful for precise detection of NO.
与基于块状材料的传感器相比,用纳米材料制造的功能传感器具有许多优点,如高灵敏度、多功能集成、低功耗和低成本。黑磷(BP)是一种二维(2D)晶体材料,具有更高的分子吸附能、可调的直接带隙、高载流子迁移率、双极性特性和高电流开/关比。在本文中,将 BP 块状物研磨成粉末,然后将粉末分散在二甲基甲酰胺(DMF)中,以获得二维 BP 纳米片溶液。随后,通过一步还原法将黑磷纳米片和 H₂PtCl 溶液混合,得到 Pt 功能化 BP 纳米复合材料。Pt 纳米颗粒以高度均匀的尺寸分散在 BP 纳米片的表面上。Pt 功能化 BP 纳米复合材料在室温下仅需 1.93 秒即可对 10 ppm 至 2.19 的 NO 表现出高响应。检测限低至 30 ppb。Pt 功能化 BP 纳米复合材料将有助于对 NO 进行精确检测。