Khand Nadir H, Solangi Amber R, Shaikh Huma, Shah Zia-Ul-Hassan, Bhagat Sanoober, Sherazi Syed Tufail H, López-Maldonado Eduardo Alberto
National Centre of Excellence in Analytical Chemistry, University of Sindh, Jamshoro, 76080, Pakistan.
Department of Soil Science, Sindh Agriculture University, Tandojam, Pakistan.
Mikrochim Acta. 2024 May 25;191(6):342. doi: 10.1007/s00604-024-06416-y.
An innovative electrochemical sensing method is introduced for dihydroxy benzene (DHB) isomers, specifically hydroquinone (HQ) and pyrocatechol (PCC), employing a zinc-oxide/manganese-oxide/reduced-graphene-oxide (ZnO/MnO/rGO) nanocomposite (NC) as an electrode modifier material. Comprehensive characterization confirmed well-dispersed ZnO/MnO nanoparticles on rGO sheets. Electrochemical analysis revealed the ZnO/MnO/rGO-NC-based modified electrode possesses low electrical resistance (126.2 Ω), high electrocatalytic activity, and rapid electron transport, attributed to the synergies between ZnO, MnO and rGO. The modified electrode demonstrated exceptional electrochemical performance in terms of selectivity for the simultaneous detection of HQ and PCC. Differential pulse voltammetry studies validated the proposed sensor's ability to detect HQ and PCC within linear response ranges of 0.01-115 μM and 0.03-60.53 μM, with detection limits of 0.0055 µM and 0.0053 µM, respectively. Practical validation using diverse water samples showcased excellent percent recovery of HQ and PCC using the ZnO/MnO/rGO-based electrochemical sensor, underscoring the sensor's potential for real-world applications in environmental monitoring.
介绍了一种用于检测二羟基苯(DHB)异构体,特别是对苯二酚(HQ)和邻苯二酚(PCC)的创新型电化学传感方法,该方法采用氧化锌/氧化锰/还原氧化石墨烯(ZnO/MnO/rGO)纳米复合材料(NC)作为电极修饰材料。全面表征证实了ZnO/MnO纳米颗粒在rGO片上分散良好。电化学分析表明,基于ZnO/MnO/rGO-NC的修饰电极具有低电阻(126.2Ω)、高电催化活性和快速电子传输能力,这归因于ZnO、MnO和rGO之间的协同作用。该修饰电极在同时检测HQ和PCC的选择性方面表现出优异的电化学性能。差分脉冲伏安法研究验证了所提出的传感器能够在0.01 - 115μM和0.03 - 60.53μM的线性响应范围内检测HQ和PCC,检测限分别为0.0055μM和0.0053μM。使用不同水样进行的实际验证表明,基于ZnO/MnO/rGO的电化学传感器对HQ和PCC具有出色的回收率,突出了该传感器在环境监测实际应用中的潜力。