Thabet Hamdy Khamees, Ashmawy Ashraf M, Ali Mohamed A, El-Desouky Ebrahim A, Abdel-Raoof Ahmed M
Center for Scientific Research and Entrepreneurship, Northern Border University Arar 73213 Saudi Arabia.
Department of Chemistry, College of Sciences and Arts, Northern Border University Rafha 91911 Saudi Arabia.
RSC Adv. 2025 Sep 18;15(41):34128-34137. doi: 10.1039/d5ra04880j. eCollection 2025 Sep 17.
Active pharmaceutical compound consumption and their discharge into municipal wastewater excretion are a growing danger for water quality and have considerable short-term, medium-term, and long-term impacts on environmental and human health. The objectives of this work were the detection and determination of cyclobenzaprine hydrochloride (CBZ), the most used muscle relaxant present in wastewater, with high accuracy and precision to avoid the serious environmental threat caused by the medication's overuse. The proposed electrode showed higher sensitivity with a Nernstian slope value of 57.97 ± 0.23 mV per decade in the linearity range of 1.0 × 10 to 1.0 × 10 M and an LOD of 5.62 × 10. This study is also the first to corroborate the use of a graphite electrode prepared from battery rod waste for the determination of CBZ, along with modification with nitrogen-doped carbon quantum dots derived from pea pods, and l-serine amino acid (PP-NCQDs) as the indicator electrode. Using molecular docking, the α-CD ionophore was found to be the most favorable orientation of CBZ towards the highly selective ionophore in the membrane sensor. The open source and accessible nature of the Analytical Green Star Area (AGSA) facilitates cross-disciplinary comparisons.
活性药物成分的消耗及其向城市污水中的排放对水质构成了日益严重的威胁,并对环境和人类健康产生了相当大的短期、中期和长期影响。这项工作的目标是高精度和高准确度地检测和测定废水中最常用的肌肉松弛剂盐酸环苯扎林(CBZ),以避免该药物过度使用所造成的严重环境威胁。所提出的电极在1.0×10至1.0×10 M的线性范围内显示出更高的灵敏度,能斯特斜率值为每十年57.97±0.23 mV,检测限为5.62×10。本研究也是首次证实使用由电池棒废料制备的石墨电极来测定CBZ,同时用源自豌豆荚的氮掺杂碳量子点和L-丝氨酸氨基酸(PP-NCQDs)进行修饰作为指示电极。通过分子对接发现,α-环糊精离子载体是膜传感器中CBZ与高选择性离子载体最有利的取向。分析绿色之星区域(AGSA)的开源和可访问性便于进行跨学科比较。