Kamel Ayman H, Amr Abd El-Galil E, Almehizia Abdulrahman A, Elsayed Elsayed A, Moustafa Gaber O
Chemistry Department, College of Science Sokheer 32038 Kingdom of Bahrain
Department of Chemistry, Faculty of Science, Ain Shams University Cairo 11566 Egypt.
RSC Adv. 2021 Aug 18;11(44):27174-27182. doi: 10.1039/d1ra04712d. eCollection 2021 Aug 9.
A simple, cost-effective, portable and disposable paper-based analytical device is designed and fabricated for copper(ii) determination. All solid-state ion-selective electrodes (ISEs) for copper and a Ag/AgCl reference electrode were constructed and optimized on the paper substrate. The copper electrodes were built using carbon nano-tube ink as a conductive substrate and an ion-to electron transducer. A suitable polymeric membrane is drop-cast on the surface of the conductive carbon ink window. The copper-sensing membrane is based on newly synthesized macrocyclic pyrido-pentapeptide derivatives as novel ionophores for copper detection. Under the optimized conditions, the presented all-solid-state paper-based Cu-ISEs showed a Nernstian response toward Cu ions in 30 mM MES buffer, pH 7.0 over the linear range of 5.0 × 10-1.0 × 10 M with a limit of detection of 8.0 × 10 M. The copper-based sensors exhibited rapid detection of Cu ions with a short response time (<10 s). The selectivity pattern of these new ionophores towards Cu ions over many common mono-, di- and trivalent cations was evaluated using the modified separate solution method (MSSM). The presented paper-based analytical device exhibited good intra-day and inter day precision. The presented tool was successfully applied for trace Cu detection in real samples of serum and whole blood collected from different children with autism spectrum disorder. The data obtained by the proposed potentiometric method were compared with those obtained by the inductively-coupled plasma (ICP) as a reference method. The presented copper paper-based analytical-device can be considered as an attractive tool for point-of-care copper determination because of its affordability, vast availability, and self-pumping ability, particularly when combined with potentiometric detection.
设计并制造了一种用于测定铜(II)的简单、经济高效、便携且一次性使用的纸质分析装置。在纸质基底上构建并优化了用于铜的所有固态离子选择性电极(ISE)和银/氯化银参比电极。铜电极以碳纳米管墨水作为导电基底和离子-电子换能器构建而成。在导电碳墨水窗口表面滴铸合适的聚合物膜。铜传感膜基于新合成的大环吡啶五肽衍生物作为用于铜检测的新型离子载体。在优化条件下,所展示的全固态纸质铜离子选择性电极在30 mM MES缓冲液(pH 7.0)中对铜离子在5.0×10⁻¹.0×10⁻⁶ M的线性范围内呈现能斯特响应,检测限为8.0×10⁻⁷ M。基于铜的传感器对铜离子的检测快速,响应时间短(<10 s)。使用改进的分别溶液法(MSSM)评估了这些新型离子载体对铜离子相对于许多常见单价、二价和三价阳离子的选择性模式。所展示的纸质分析装置表现出良好的日内和日间精密度。所展示的工具成功应用于从不同自闭症谱系障碍儿童采集的血清和全血实际样品中的痕量铜检测。将所提出的电位法获得的数据与作为参考方法的电感耦合等离子体(ICP)获得的数据进行比较。所展示的基于铜的纸质分析装置因其价格低廉、易于获取和自抽吸能力,特别是与电位检测相结合时,可被视为用于即时检测铜的有吸引力的工具。