AlQahtani Hadi Rasam, Al-Odayni Abdel-Basit M, Alhamed Yusif, Grell Martin
Department of Physics and Astronomy, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.
Engineer Abdullah Bugshan Research Chair for Dental and Oral Rehabilitation, College of Dentistry, King Saud University, Riyadh 11451, Saudi Arabia.
Sensors (Basel). 2023 Aug 31;23(17):7554. doi: 10.3390/s23177554.
We further simplify the most 'user-friendly' potentiometric sensor for waterborne analytes, the 'extended-gate field effect transistor' (EGFET). This is accomplished using a 'bridge' design, that links two separate water pools, a 'control gate' (CG) pool and a 'floating gate' (FG) pool, by a bridge filled with agar-agar hydrogel. We show electric communication between electrodes in the pools across the gel bridge to the gate of an LND150 FET. When loading the gel bridge with a sorbent that is known to act as a sensitiser for Cu water pollution, namely, the ion exchanging zeolite 'clinoptilolite', the bridged EGFET acts as a potentiometric sensor to waterborne Cu. We then introduce novel sensitisers into the gel bridge, the commercially available resins Puromet MTS9140 and MTS9200, which are sorbents for the extraction of mercury (Hg) pollution from water. We find a response of the bridged EGFET to Hg water pollution, setting a template for the rapid screening of ion exchange resins that are readily available for a wide range of harmful (or precious) metal ions. We fit the potentiometric sensor response vs. pollutant concentration characteristics to the Langmuir-Freundlich (LF) model which is discussed in context with other ion-sensor characteristics.
我们进一步简化了用于水性分析物的最“用户友好”的电位传感器——“扩展栅场效应晶体管”(EGFET)。这是通过一种“桥接”设计实现的,该设计通过填充琼脂水凝胶的桥连接两个独立的水池,即“控制栅”(CG)池和“浮动栅”(FG)池。我们展示了水池中的电极通过凝胶桥与LND150场效应晶体管的栅极之间的电通信。当在凝胶桥中加载一种已知对铜水污染起敏化作用的吸附剂,即离子交换沸石“斜发沸石”时,桥接的EGFET就充当了对水性铜的电位传感器。然后,我们将新型敏化剂引入凝胶桥中,即市售树脂Puromet MTS9140和MTS9200,它们是用于从水中提取汞(Hg)污染的吸附剂。我们发现桥接的EGFET对汞水污染有响应,为快速筛选可用于多种有害(或贵金属)金属离子的离子交换树脂奠定了基础。我们将电位传感器响应与污染物浓度特性拟合到Langmuir-Freundlich(LF)模型,并结合其他离子传感器特性进行了讨论。