Enhancing sensor performance through the surface functionalization of SBA-15 with 2-chloroquinoline-3-carbaldehyde and sulphaguanidine verified via DFT insights

表面改性 荧光 纳米材料 水溶液 选择性 离子 材料科学 穆利肯种群分析 水介质 纳米技术 表面电荷 化学 分析化学(期刊) 航程(航空) 检出限 灵敏度(控制系统) 水溶液中的金属离子 选择性表面 纳米传感器
作者
Ghodsi Mohammadi Ziarani,Ala Arvish,Zahra Panahande,Alireza Badiei,Mehran Feizi‐Dehnayebi
出处
期刊:Chemical engineering journal advances [Elsevier BV]
卷期号:24: 100923-100923 被引量:11
标识
DOI:10.1016/j.ceja.2025.100923
摘要

• The surface modification of SBA-15 with 2-Chloroquinoline-3-carbaldehyde and Sulphaguanidine was performed, and SBA-Pr-CQC-SG was synthesized. • This novel nanomaterial was characterized using a range of advanced analytical techniques, including FT-IR, EDX, SEM, N 2 adsorption-desorption, and TGA analysis. • The fluorescence properties of SBA-Pr-CQC-SG were investigated, revealing its potential as a chemosensor for the selective detection of Pb²⁺ ions in aqueous media with a LOD of 23 × 10⁻ 7 M. A novel fluorescent nanomaterial, SBA-Pr-CQC-SG, was synthesized by functionalizing SBA-15 with (3-aminopropyl)triethoxysilane, followed by modification with 2-chloroquinoline-3-carbaldehyde and sulfaguanidine. The material was systematically characterized by FT-IR, EDX, SEM, N 2 adsorption-desorption, and TGA, confirming its successful fabrication, structural stability, and porosity. Fluorescence studies demonstrated that SBA-Pr-CQC-SG exhibits high sensitivity and selectivity toward Pb 2+ ions in aqueous media. To gain molecular-level insight into the sensing mechanism, DFT calculations were performed. Geometry optimization, MEP mapping, Mulliken charge distribution, and FMO analyses all confirmed that Pb 2+ preferentially interacts with the N3 and O1 atoms of the probe. The practical applicability of the sensor was validated using real water samples. Overall, these findings demonstrate that SBA-Pr-CQC-SG is a robust, selective, and efficient sensing platform for Pb 2+ detection, offering both strong theoretical validation and reliable performance in real environmental samples.
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