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A 2D Acridine-Based Covalent Organic Framework for Selective Detection and Efficient Extraction of Gold from Complex Aqueous-Based Matrices
被引:29
|作者:
Mei, Douchao
[1
]
Yan, Bing
[1
]
机构:
[1] Tongji Univ, Sch Chem Sci & Engn, Shanghai Key Lab Chem Assessment & Sustainabil, Siping Rd 1239, Shanghai 200092, Peoples R China
基金:
中国国家自然科学基金;
关键词:
covalent organic framework;
active nitrogen sites;
Au(III) detection;
Au(III) adsorption;
complex water matrices;
ELECTRONIC-WASTE;
RECOVERY;
AU(III);
D O I:
10.1002/anie.202402205
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Developing candidate materials which possess the ability of both selective detection and efficient capture of precious metal gold is highly desirable for environment and economy. However, most of reported materials only focus on single function, which seriously restricts their practical application as probes or adsorbents. Herein, a two dimensional (2D) acridine-based covalent organic framework (TpDa-COF) is prepared via the linkage of imine bonds for gold detection and adsorption. The synthesized COF can achieve both fluorescence and colorimetric dual sensing for Au3+ in a low concentration range (0.1-1.5 ppm) with the limit of detection (LOD) of 0.036 ppm. Impressively, the selectivity of TpDa-COF for the detection of Au3+ is admirable (Fe3+, Fe2+ and Cu2+ for negligible influence on its fluorescence). In addition, TpDa-COF exhibits ultrahigh adsorption capacity of 982.5 mg & sdot; g(-1) for gold at pH=4, which is attributed the synergistic effect of both selective coordination and reductive process of Au(III) to Au(0). Meanwhile, both positive entropy change (Delta S=76.07 J & sdot; mol(-1) & sdot; K-1) and high distribution coefficient (K-d=12484.8 mL & sdot; g(-1)) confirm the good affinity between TpDa-COF framework and gold. This work gives us a new insight to prepare COF with pyridine nitrogen sites for gold detection and adsorption.<br /> (TR Abstract Type: graphical; Abstract Language: en) A 2D acridine-based covalent organic framework (TpDa-COF) was prepared for the selective detection and efficient capture of gold. Experimental characterizations and theoretical calculations reveal that the a-photoinduced electron transfer, selective coordination and reductive process of Au(III) to Au(0) are the possible sensing and adsorption mechanisms. Furthermore, TpDa-COF exhibits ultrahigh capture efficiency (>96 %) for gold in real water environments including river water, seawater and CPU leaching solutions.
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