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固载于 SOD/FAU 沸石中的银纳米簇的可调谐发光及对有机胺的选择性传感

Tunable Luminescence of Silver Nanoclusters Confined in SOD/FAU Zeolites and Selective Sensing for Organic Amine.

机构信息

National-Local Joint Engineering Laboratory for Energy Conservation in Chemical Process Integration and Resources Utilization, Tianjin Key Laboratory of Chemical Process Safety, School of Chemical Engineering and Technology, Hebei University of Technology, GuangRong Dao 8, Hongqiao District, Tianjin 300130, P. R. China.

出版信息

Inorg Chem. 2023 Feb 6;62(5):2430-2439. doi: 10.1021/acs.inorgchem.2c04317. Epub 2023 Jan 23.

DOI:10.1021/acs.inorgchem.2c04317
PMID:36689987
Abstract

A series of Ag-zeolite luminescent composites are prepared based on SOD and FAUY zeolites, and the effect of zeolite host particle size on their dynamic luminescent emission properties was discussed for the first time. The relationship between zeolite particle size and the nucleation of silver nanoclusters (AgNCs) is revealed. With the increase of zeolite particle size from nanometers to microns, the luminescent color of both Ag-SOD and Ag-Y composites shows significant blue shift. The observed tunable luminescence can be accounted for the slower nucleation rate of AgNCs in micron-scale zeolites with longer channels, resulting in smaller nuclearity of AgNCs within large-size zeolites, through the characterization of extended X-ray absorption fine structure, implying the important roles played by the zeolite themselves in determining the luminescence properties. Moreover, the composites prepared by us feature simple signal transduction, fast response (30 s), and excellent selectivity and sensitivity for discriminative luminescence detection of triethylamine and ethylamine, and they have good reversible luminescence response after sensing HAc gas, which might imply the potential applications in the volatile organic amine detection and information encryption field.

摘要

一系列基于 SOD 和 FAUY 沸石的 Ag-沸石发光复合材料被制备,并且首次讨论了沸石主颗粒尺寸对其动态发光发射性质的影响。揭示了沸石颗粒尺寸与银纳米团簇(AgNCs)成核之间的关系。随着沸石颗粒尺寸从纳米到微米的增加,Ag-SOD 和 Ag-Y 复合材料的发光颜色都表现出显著的蓝移。观察到的可调谐发光可以归因于在具有较长通道的微米级沸石中 AgNCs 的成核速率较慢,导致大尺寸沸石中 AgNCs 的核性较小,这通过扩展 X 射线吸收精细结构的表征得以证实,表明沸石本身在确定发光性质方面起着重要作用。此外,我们所制备的复合材料具有简单的信号转导、快速响应(30 s),并且对三乙胺和乙胺的区分性发光检测具有优异的选择性和灵敏度,并且在感应 HAc 气体后具有良好的可逆发光响应,这可能暗示着在挥发性有机胺检测和信息加密领域的潜在应用。

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