Kumar Arun, Thakur Prakriti, Dhiman Nisha, Balhara Sachin, Mohanty Paritosh
Functional Materials Laboratory, Department of Chemistry, Indian Institute of Technology (IIT) Roorkee Roorkee Uttarakhand-247667 India
Nanoscale Adv. 2025 Mar 18;7(9):2626-2633. doi: 10.1039/d5na00079c. eCollection 2025 Apr 29.
A heteroatom (nitrogen and phosphorus) enriched pyridinic bridged inorganic-organic hybrid material (HPHM) was synthesized by polycondensing phosphonitrilic chloride trimer (PNC) and 2,6-diaminopyridine in DMSO at 140 °C. The synthesized material was used as an efficient electrode material for the electrochemical detection of selenium(iv) ions [Se(iv)] in aqueous solution. The HPHM electrode (active mass loading of 4.1 mg cm) achieves a detection range of 5-50 ppb at a deposition potential of -1.2 V and a deposition time of 170 s with a lower limit of detection (LOD) of 2.18 ppb. This LOD is significantly below the World Health Organization's (WHO) recommended maximum level for selenium in drinking water. Moreover, the electrode material maintains high selectivity for Se(iv) ions in the presence of various interfering ions and high sensitivity over 200 cycles with only a minimal (∼6.83%) decline in current density response. The higher Se(iv) ion detection capability is attributed to the strategic incorporation of nitrogen and phosphorus heteroatoms, enhancing the material's electrochemical properties.
通过在140℃下于二甲基亚砜中使三聚氯化磷腈(PNC)与2,6 - 二氨基吡啶缩聚,合成了一种富含杂原子(氮和磷)的吡啶桥联无机 - 有机杂化材料(HPHM)。合成的材料被用作一种高效的电极材料,用于水溶液中硒(IV)离子[Se(IV)]的电化学检测。HPHM电极(活性物质负载量为4.1 mg/cm)在沉积电位为 - 1.2 V、沉积时间为170 s时,实现了5 - 50 ppb的检测范围,检测下限(LOD)为2.18 ppb。该检测下限显著低于世界卫生组织(WHO)推荐的饮用水中硒的最大含量水平。此外,在存在各种干扰离子的情况下,电极材料对Se(IV)离子保持高选择性,并且在200次循环中保持高灵敏度,电流密度响应仅略有下降(约6.83%)。较高的Se(IV)离子检测能力归因于氮和磷杂原子的策略性引入,增强了材料的电化学性能。