Nikolaev Institute of Inorganic Chemistry SB RAS, 3 Lavrentiev Pr., 630090 Novosibirsk, Russia.
Kirensky Institute of Physics, Federal Research Center KSC SB RAS, 660036 Krasnoyarsk, Russia.
Biosensors (Basel). 2022 Jun 30;12(7):476. doi: 10.3390/bios12070476.
This work is aimed at the development of new heterostructures based on cobalt phthalocyanines (CoPc) and gold nanoparticles (AuNPs), and the evaluation of the prospects of their use to determine low concentrations of ammonia and nitric oxide. For this purpose, CoPc films were decorated with AuNPs by gas-phase methods (MOCVD and PVD) and drop-casting (DC), and their chemiresistive sensor response to low concentrations of NO (10-50 ppb) and NH (1-10 ppm) was investigated. A comparative analysis of the characteristics of heterostructures depending on the preparation methods was carried out. The composition, structure, and morphology of the resulting hybrid films were studied by X-ray photoelectron spectroscopy (XPS) and inductively coupled plasma atomic emission (ICP-AES) spectroscopy, as well as electron microscopy methods to discuss the effect of these parameters on the sensor response of hybrid films to ammonia and nitric oxide. It was shown that regardless of the fabrication method, the response of Au/CoPc heterostructures to NH and NO gases increased with an increase in the concentration of gold. The sensor response of Au/CoPc heterostructures to NH increased 2-3.3 times compared to CoPc film, whereas in the case of NO it increased up to 16 times. The detection limits of the Au/CoPc heterostructure with a gold content of ca. 2.1 µg/cm for NH and NO were 0.1 ppm and 4 ppb, respectively. It was shown that Au/CoPc heterostructures can be used for the detection of NH in a gas mixture simulating exhaled air (N-74%, O-16%, HO-6%, CO-4%).
这项工作旨在开发基于钴酞菁(CoPc)和金纳米粒子(AuNPs)的新型杂化结构,并评估其用于测定低浓度氨和一氧化氮的前景。为此,通过气相法(MOCVD 和 PVD)和滴铸法(DC)在 CoPc 薄膜上修饰 AuNPs,并研究了它们对低浓度 NO(10-50 ppb)和 NH(1-10 ppm)的电阻式传感器响应。对不同制备方法的杂化结构特性进行了比较分析。通过 X 射线光电子能谱(XPS)和电感耦合等离子体原子发射光谱(ICP-AES)光谱以及电子显微镜方法研究了所得杂化薄膜的组成、结构和形貌,以讨论这些参数对混合薄膜对氨和一氧化氮传感器响应的影响。结果表明,无论制备方法如何,Au/CoPc 杂化结构对 NH 和 NO 气体的响应都随金浓度的增加而增加。与 CoPc 薄膜相比,Au/CoPc 杂化结构对 NH 的传感器响应增加了 2-3.3 倍,而在 NO 的情况下,响应增加了高达 16 倍。金含量约为 2.1 µg/cm 的 Au/CoPc 杂化结构对 NH 和 NO 的检测限分别为 0.1 ppm 和 4 ppb。结果表明,Au/CoPc 杂化结构可用于检测模拟呼出气体(N-74%、O-16%、HO-6%、CO-4%)中的 NH。