Key Laboratory of Modern Agricultural Equipment and Technology (Jiangsu University), Ministry of Education, School of Agricultural Engineering, Jiangsu University, Zhenjiang, Jiangsu, 212013, China.
Key Laboratory of Modern Agricultural Equipment and Technology (Jiangsu University), Ministry of Education, School of Agricultural Engineering, Jiangsu University, Zhenjiang, Jiangsu, 212013, China.
Biosens Bioelectron. 2024 May 1;251:116121. doi: 10.1016/j.bios.2024.116121. Epub 2024 Feb 8.
Bis(2-ethylhexyl)phthalate (DEHP), an endocrine disruptor, shows carcinogenic, teratogenic, mutagenic and estrogenic effects. It is easy to release from plastic materials and migrate to soil environment, causing serious pollution and posing a great threat to human health. In our work, a photoelectrochemical (PEC) sensing platform for DEHP detection was constructed using BiOI/ZnO nanoarrays (NRs) as the transducer species and the DEHP aptamers as the biological recognition elements. ZnO NRs with three-dimensional and large diameter area were prepared by hydrothermal method to increase the light absorption capacity. Coupling BiOI in a narrow band gap with ZnO NRs strengthened visible-light absorption, while promoting charge carrier separation and transportation. This was attributed to the generation of an internal electric field between BiOI and ZnO NRs, exhibiting obvious photocurrent response. The as-developed PEC sensing platform demonstrated great sensing performance for detection of DEHP. Furthermore, the photocurrent varied and the logarithm of DEHP concentration showed a linear relationship from 1.0 × 10 to 5.0 × 10 mol/L, and the limit of detection was estimated to be 3.8 × 10 mol/L. In the meantime, while evaluating its usage in real soil samples, satisfying outcomes were realized. Thus, the as-proposed PEC sensing platform provided a potential device to monitor DEHP in the environment.
双(2-乙基己基)邻苯二甲酸酯(DEHP)是一种内分泌干扰物,具有致癌、致畸、致突变和雌激素作用。它很容易从塑料材料中释放出来并迁移到土壤环境中,造成严重的污染,对人类健康构成极大威胁。在我们的工作中,使用 BiOI/ZnO 纳米阵列(NRs)作为换能器物种和 DEHP 适体作为生物识别元件,构建了用于检测 DEHP 的光电化学(PEC)传感平台。通过水热法制备了具有三维和大直径面积的 ZnO NRs,以提高光吸收能力。将带隙较窄的 BiOI 与 ZnO NRs 耦合,增强了可见光吸收,同时促进了载流子的分离和传输。这归因于 BiOI 和 ZnO NRs 之间产生的内电场,表现出明显的光电流响应。所开发的 PEC 传感平台对 DEHP 的检测表现出优异的传感性能。此外,光电流随着 DEHP 浓度的对数从 1.0×10 到 5.0×10 mol/L 而变化,检测限估计为 3.8×10 mol/L。同时,在评估其在实际土壤样品中的应用时,得到了令人满意的结果。因此,所提出的 PEC 传感平台为监测环境中的 DEHP 提供了一种潜在的设备。