Literature DB >> 27736058

Highly Efficient Luminescent Metal-Organic Framework for the Simultaneous Detection and Removal of Heavy Metals from Water.

Nathan D Rudd1, Hao Wang1, Erika M A Fuentes-Fernandez2, Simon J Teat3, Feng Chen4, Gene Hall1, Yves J Chabal2, Jing Li1.   

Abstract

We have designed and synthesized an isoreticular series of luminescent metal-organic frameworks (LMOFs) by incorporating a strongly emissive molecular fluorophore and functionally diverse colinkers into Zn-based structures. The three-dimensional porous networks of LMOF-261, -262, and -263 represent a unique/new type of nets, classified as a 2-nodal, (4,4)-c net (mot-e type) with 4-fold, class IIIa interpenetration. All compounds crystallize in a body-centered tetragonal crystal system (space group I41/a). A systematic study has been implemented to analyze their interactions with heavy metals. LMOF-263 exhibits impressive water stability, high porosity, and strong luminescence, making it an excellent candidate as a fluorescent chemical sensor and adsorbent for aqueous contaminants. It is extremely responsive to toxic heavy metals at a parts per billion level (3.3 ppb Hg2+, 19.7 ppb Pb2+) and demonstrates high selectivity for heavy metals over light metals, with detection ratios of 167.4 and 209.5 for Hg2+/Ca2+ and Hg2+/Mg2+, respectively. Mixed-metal adsorption experiments also show that LMOF-263 selectively adsorbs Hg2+ over other heavy metal ions in addition to light metals. The Pb2+ KSV value for LMOF-263 (55,017 M-1) is the highest among LMOFs reported to date, and the Hg2+ KSV value is the second highest (459,446 M-1). LMOF-263 exhibits a maximum adsorption capacity of 380 mg Hg2+/g. The Hg2+ adsorption process follows pseudo-second-order kinetics, removing 99.1% of the metal within 30 min. An in situ XPS study provides insight to help understand the interaction mechanism between Hg2+ and LMOF-263. No other MOFs have demonstrated such a high performance in both the detection and the capture of Hg2+ from aqueous solution.

Entities:  

Keywords:  heavy metal adsorption; heavy metal detection; isoreticular series; ligand-based emission; luminescent metal−organic framework

Year:  2016        PMID: 27736058     DOI: 10.1021/acsami.6b10890

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  11 in total

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10.  Mercury Removal from Wastewater Using Cysteamine Functionalized Membranes.

Authors:  Mohammad Saiful Islam; Ronald J Vogler; Sayed Mohammad Abdullah Al Hasnine; Sebastián Hernández; Nga Malekzadeh; Thomas P Hoelen; Evan S Hatakeyama; Dibakar Bhattacharyya
Journal:  ACS Omega       Date:  2020-08-27
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