Key Laboratory of Nanobiosensing and Nanobioanalysis at Universities of Jilin Province, Faculty of Chemistry, Northeast Normal University, Changchun, 130024, People's Republic of China.
Centre for Advanced Optoelectronic Functional Materials Research, Key Laboratory for UV Light-Emitting Material and Technology, Northeast Normal University, Changchun, 130024, China.
Mikrochim Acta. 2020 Jun 26;187(7):404. doi: 10.1007/s00604-020-04371-y.
Metal-organic framework Ni(BDC)(DABCO) (Ni-MOF)/porous graphene aerogel (PGA) composites were fabricated for the first time. The introduction of PGA enhances conductivity of Ni-MOF, prevents Ni-MOF from accumulating, reduces the size of Ni-MOF, and increases the pore size of composites, which improve the electrocatalytic activity of Ni-MOF@PGA-2. The prepared sensors based on Ni-MOF@PGA-2 composite show the highest catalytic current towards electroreduction of 2-nitrochlorobenzene (2-NCB), 3-nitrochlorobenzene (3-NCB), and 4-nitrochlorobenzene (4-NCB) at around - 0.61 V, - 0.56 V, and - 0.57 V (vs. Ag/AgCl) with respect to other sensors. The reaction mechanisms also are discussed. Under optimized experiment conditions, the Ni-MOF@PGA-2/GCE displays the widest linear range (6-1260, 4-980, and 2-1280 μM for 2-NCB, 3-NCB, and 4-NCB, respectively) for determination of individual nitrochlorobenzene isomers (NCBIs) compared to that of recent reports, and relatively low detection limit (0.093, 0.085, and 0.051 μM for 2-NCB, 3-NCB, and 4-NCB, respectively). More importantly, three NCBIs in the mixture were for the first time simultaneously determined by combining differential pulse voltammetry (DPV) based on Ni-MOF@PGA-2/GCE with partial least squares (PLS) chemometrics modeling method. The proposed method was evaluated towards the determination of NCBI mixtures in tap water and Jing lake water, and satisfactory recoveries were obtained. Graphical abstract.
首次制备了金属有机骨架 Ni(BDC)(DABCO)(Ni-MOF)/多孔石墨烯气凝胶(PGA)复合材料。PGA 的引入增强了 Ni-MOF 的导电性,阻止了 Ni-MOF 的聚集,减小了 Ni-MOF 的尺寸,并增加了复合材料的孔径,从而提高了 Ni-MOF@PGA-2 的电催化活性。基于 Ni-MOF@PGA-2 复合材料制备的传感器对 2-硝基氯苯(2-NCB)、3-硝基氯苯(3-NCB)和 4-硝基氯苯(4-NCB)的电化学还原表现出最高的催化电流,在相对于其他传感器,在约-0.61 V、-0.56 V 和-0.57 V(相对于 Ag/AgCl)。还讨论了反应机制。在优化的实验条件下,与最近的报道相比,Ni-MOF@PGA-2/GCE 对单个硝基氯苯异构体(NCBI)的测定具有最宽的线性范围(6-1260、4-980 和 2-1280 μM 用于 2-NCB、3-NCB 和 4-NCB),并且检测限相对较低(0.093、0.085 和 0.051 μM 用于 2-NCB、3-NCB 和 4-NCB)。更重要的是,首次通过将基于 Ni-MOF@PGA-2/GCE 的差分脉冲伏安法(DPV)与偏最小二乘(PLS)化学计量学建模方法相结合,同时测定了混合物中的三种 NCBI。该方法用于测定自来水中和荆湖水中的 NCBI 混合物,获得了令人满意的回收率。