构建具有s型异质结的BiOI@Nv/g-C3N4,增强其光电化学性能,实现对痕量毒死蜱的高灵敏度和选择性检测

IF 5.7 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Xi Chen , Haicai Huang , Shipeng Huang , Qingping Wu , Jingqiu Liu , Haoyu Duan , Houyang Chen
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引用次数: 0

摘要

毒死蜱是环境中常用的有机磷农药之一,可能对人体造成肺癌等不可逆转的危害。基于g-C3N4的毒死蜱光电化学检测技术受到越来越多的关注,但受到活性位点和载流子转移等固有限制的阻碍。为了克服这些挑战,提出了一种阶跃异质结的BiOI@Nv/g-C3N4光电化学传感器,用于灵敏和选择性地检测痕量毒死蜱。由此产生的N空位有利于光电子从BiOI迁移到Nv/g-C3N4的空穴,在光照射下与Nv/g-C3N4的空穴复合。建立了从Nv/g-C3N4指向BiOI的强大定向内嵌电场。制备的传感器光电流强度比纯g-C3N4高7.6倍以上,具有良好的PEC性能。该传感器的高选择性是由于复合材料的Bi位与毒死蜱中的S、N原子之间的特异性相互作用。该传感器灵敏度高、稳定性好,线性检测范围为0.01 ~ 20 ppb,检出限为0.004 ppb。此外,该传感器在实际河流水和土壤样品中表现出可靠的性能,实现了良好的回收率。与传统的PEC传感器不同,该传感器基于改变的内置电场,通过产生N缺陷诱导的驱动力,制备成s方案异质结。这项工作不仅提供了实验证据,而且还提出了基础理论,为环境分析提供了一个强大的基于g- c3n4的PEC平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Constructing BiOI@Nv/g-C3N4 with S-scheme heterojunction for enhanced photoelectrochemical performances towards highly sensitive and selective detection of trace chlorpyrifos

Constructing BiOI@Nv/g-C3N4 with S-scheme heterojunction for enhanced photoelectrochemical performances towards highly sensitive and selective detection of trace chlorpyrifos

Constructing BiOI@Nv/g-C3N4 with S-scheme heterojunction for enhanced photoelectrochemical performances towards highly sensitive and selective detection of trace chlorpyrifos
Chlorpyrifos, one of the organophosphorus pesticide commonly used in the environment, may bring about an irreversible harm such as lung cancer to human body. Photoelectrochemical (PEC) detection techniques based on g-C3N4 for sensing chlorpyrifos have attracted increasing attentions, but impeded by several inherent constraints such as a limit of active sites and carriers transfer. To conquer these challenges, a photoelectrochemical sensor of BiOI@Nv/g-C3N4 with a step scheme heterojunction was thereby proposed for the sensitive and selective detection of trace chlorpyrifos. Herein, the created N vacancies facilitated the migration of photo-electrons from BiOI to recombine with the holes of Nv/g-C3N4 under light irradiation. A powerful oriented built-in electric field was established directing from Nv/g-C3N4 to BiOI. The photocurrent intensity of the as-prepared sensor exhibited over 7.6 times higher than that of pure g-C3N4, showing a well PEC performance. High selectivity of the developed sensor was attributed to the specific interaction between Bi sites of the developed composites and the S, N atoms in chlorpyrifos. Such sensitive and steady PEC sensor exhibited a linear detection range from 0.01 to 20 ppb with a detection limit of 0.004 ppb. Further, the sensor displayed reliable performance when applied to real river water and soil samples, achieving nice recovery rates. Unlike traditional PEC sensor, this one was prepared into S-scheme heterojunction by creating a N defect-induced driving force based on the altered built-in electric field. The work not only provides experimental evidences but also advances the fundamental theories so as to offer a robust g–C3N4–based PEC platform for environmental analysis.
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来源期刊
Analytica Chimica Acta
Analytica Chimica Acta 化学-分析化学
CiteScore
10.40
自引率
6.50%
发文量
1081
审稿时长
38 days
期刊介绍: Analytica Chimica Acta has an open access mirror journal Analytica Chimica Acta: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. Analytica Chimica Acta provides a forum for the rapid publication of original research, and critical, comprehensive reviews dealing with all aspects of fundamental and applied modern analytical chemistry. The journal welcomes the submission of research papers which report studies concerning the development of new and significant analytical methodologies. In determining the suitability of submitted articles for publication, particular scrutiny will be placed on the degree of novelty and impact of the research and the extent to which it adds to the existing body of knowledge in analytical chemistry.
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