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1.
Appl Spectrosc ; 70(5): 826-8, 2016 05.
Artigo em Inglês | MEDLINE | ID: mdl-27006021

RESUMO

Copper laden ore is often concentrated using flotation. Before the head flow slurry can be smelted, it is important to know the concentration of copper and contaminants. The concentration of copper and other elements fluctuate significantly in the head flow, often requiring modification of the concentrations in the slurry prior to smelting. A rapid, real-time analytical method is needed to support on-site optimization of the smelter feedstock. A portable, handheld X-ray fluorescence spectrometer was utilized to determine the copper concentration in a head flow suspension at the slurry origin. The method requires only seconds and is reliable for copper concentrations of 2.0-25%, typically encountered in such slurries.

2.
Dalton Trans ; 41(14): 3889-94, 2012 Apr 14.
Artigo em Inglês | MEDLINE | ID: mdl-22318380

RESUMO

This perspective discusses the use of sequential self-assembly in the construction of metal-organic frameworks through the systematic insertion, replacement, and removal of organic structural building units. We review previous works that can be classified as such sequential self-assembly in multidimensional MOFs.

3.
J Am Chem Soc ; 133(26): 9984-7, 2011 Jul 06.
Artigo em Inglês | MEDLINE | ID: mdl-21671680

RESUMO

We demonstrate how a single-crystal to single-crystal transformation resulting from bridging-linker replacement is possible in extended 2D and 3D metal-organic frameworks (MOFs) by introducing pillared paddlewheel MOF structures into a solution containing dipyridyl linkers. No lateral movement of the layers was observed during this transformation, creating a templating effect from the "parent" structure to the "daughter" structure. A previously unattainable structure was obtained by a two-step synthetic method utilizing the bridging-linker replacement transformation method. Additionally, a bridging-linker insertion was observed when excess linker was used with the 2D MOF structure, inducing an overall 2D to 3D transformation.

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