Department of Chemistry, Shahid Bahonar University of Kerman, P.O. Box 76175-133, Kerman, Iran.
Young Researchers Society, Shahid Bahonar University of Kerman, P.O. Box 76175-133, Kerman, Iran.
Sci Rep. 2023 Jun 1;13(1):8902. doi: 10.1038/s41598-023-36028-0.
Dendrimers, a new class of nanomaterials, are receiving more attention in various fields. In this study, by combining the advantages of polyamidoamine (PAMAM) dendrimer with reduced graphene oxide (rGO) and bismuth sulfide (BiS), we came to design a new composite and its application for electrochemical sensors was investigated for the first time. As a new approach in the preparation of the composite, PAMAM was used for the first time to increase the surface of BiS with rGO, which ultimately led to an increase in the active surface area of the sensor (5 times compared to the bare electrode). For the first time, we used the sonochemical method for interaction between PAMAM with BiS and rGO, which was a simpler and faster method to prepare the composite. The purposeful design of the composite was done by using the experimental design method to obtain the optimum composition of components. The new nanocomposite was successfully applied for simple and sensitive electrochemical sensing of salbutamol for controlling the health of food. Salbutamol is used as a prohibited additive in animal and poultry feed. The sensor has good sensitivity (35 times increase compared to the bare electrode) and a low detection limit (1.62 nmol/L). Moreover, it has acceptable selectivity, good repeatability (1.52-3.50%), good reproducibility (1.88%), and satisfactory accuracy (recoveries: 84.6-97.8%). An outstanding feature of the sensor is its broad linear range (5.00-6.00 × 10 nmol/L). This sensor is well suited for the determination of salbutamol in milk, sausage, and livestock and poultry feed samples.
树状大分子是一类新型纳米材料,在各个领域受到越来越多的关注。在这项研究中,我们结合了聚酰胺-胺(PAMAM)树状大分子、还原氧化石墨烯(rGO)和硫化铋(BiS)的优势,首次设计了一种新型复合材料,并研究了其在电化学传感器中的应用。作为制备复合材料的新方法,首次使用 PAMAM 来增加 BiS 与 rGO 的表面,这最终导致传感器的活性表面积增加(与裸电极相比增加了 5 倍)。我们首次使用超声化学方法使 PAMAM 与 BiS 和 rGO 相互作用,这是一种更简单、更快速的制备复合材料的方法。通过使用实验设计方法,有针对性地设计了复合材料,以获得最佳的组件组成。成功地将新型纳米复合材料应用于简单灵敏的电化学传感,用于控制食品健康的沙丁胺醇检测。沙丁胺醇被用作动物和家禽饲料中的禁用添加剂。该传感器具有良好的灵敏度(与裸电极相比增加了 35 倍)和低检测限(1.62 nmol/L)。此外,它具有可接受的选择性、良好的重复性(1.52-3.50%)、良好的重现性(1.88%)和令人满意的准确性(回收率:84.6-97.8%)。该传感器的一个突出特点是其宽线性范围(5.00-6.00×10 nmol/L)。该传感器非常适合于牛奶、香肠和牲畜及家禽饲料样品中沙丁胺醇的测定。