FeCx-coated biochar nanosheets as efficient bifunctional catalyst for electrochemical detection and reduction of 4-nitrophenol

双功能 生物炭 催化作用 化学 检出限 硝基苯酚 煅烧 对苯二酚 吸附 电化学 反应速率常数 4-硝基苯酚 电催化剂 比表面积 热解 无机化学 化学工程 动力学 有机化学 色谱法 电极 物理化学 物理 量子力学 工程类
作者
Anteneh F. Baye,Harshad A. Bandal,Hern Kim
出处
期刊:Environmental Research [Elsevier]
卷期号:246: 118071-118071 被引量:9
标识
DOI:10.1016/j.envres.2023.118071
摘要

Herein, we present the exceptional performance of FeCx-coated carbon sheets (FC) derived from the pyrolysis of waste biomass as a bifunctional catalyst for electrochemical detection and catalytic reduction of 4-nitrophenol (4-NP). Despite having a lower surface area, larger particle size, and lesser N content, the FC material prepared at a calcination temperature of 900 °C (FC900) outperforms the other samples. Deeper investigations revealed that the FC900 efficiently facilitates the charge transfer process and enhances the diffusion rate of 4-NP, leading to increased surface coverage of 4-NP on the surface of FC900. Additionally, relatively weaker interactions between 4-NP and FC900 may allow the facile adsorption and desorption of reaction intermediates. Due to the synergetic interplay of these factors, FC900 exhibited a linear response to changes in 4-NP concentration from 1 μM to 100 μM, a low limit of detection (LOD) of 84 nM (S/N = 3) and 240 nM (S/N = 10), respectively and sensitivity of 12.15 μA μM−1 cm−2. Importantly, it selectively detects 4-NP in the presence of five times more concentrated 2-aminophenol, 4-aminophenol, catechol, resorcinol, and hydroquinone and ten times more concentrated metal salts such as Na2SO4. NaNO3, KCl, CuCl2, and CaCl2. Moreover, FC900 can accurately detect micromolar levels of 4-NP in river water with high recovery values (99.8–103.5 %). In addition, FC900 exhibited outstanding catalytic activity in reducing 4-NP to 4-aminophenol (4-AP), achieving complete conversion within 8 min with a high-rate constant of 0.42 min−1. FC900 also shows high recyclability in six consecutive catalytic reactions due to Fe magnetic property.
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