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LFIM - Wendy L. Queen

@lfim-epfl.bsky.social
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LFIM - Wendy L. Queen @lfim-epfl.bsky.social · 31/07/2026
Excited to share our latest JACS paper! Our work demonstrates that cluster dehydroxylation generates unsaturated Zr sites that enhance As(V) adsorption, while increasing missing-linker defects alone provides little benefit. Read more: pubs.acs.org/jacsat/artic... #MOFs #MaterialsChemistry #JACS
pubs.acs.org
Node Distortions as a Means of Defect Engineering in Zr-Based MOFs
Abstract. Defect engineering in Zr-based metal–organic frameworks (Zr-MOFs) has focused primarily on missing-linker defects. However, recent studies sugges
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LFIM - Wendy L. Queen @lfim-epfl.bsky.social · 27/03/2026
🚨New postdoc opening🚀 The Laboratory for Functional Inorganic Materials (LFIM) at EPFL is seeking a Postdoctoral Researcher to lead the development and engineering of next-generation sorbents for Direct Air Capture. For more info: www.epfl.ch/labs/lfim/op... #Postdoc #DAC #CarbonCapture #EPFL
epfl.ch
Openings
Postdoc positions   1. Advanced Materials for Direct Air Capture (DAC) We are looking for a specialist in the design and synthesis of porous materials (MOFs, COFs, or functionalized polymers) optimize...
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LFIM - Wendy L. Queen @lfim-epfl.bsky.social · 10/03/2026
📢 Our new paper is out! We report stable zirconium–piperazine MOFs that enable efficient and selective recovery of gold, highlighting the potential of piperazine-based MOFs for precious-metal extraction. Read the paper 👇 pubs.acs.org/doi/10.1021/... #MOFs #GoldRecovery #PorousMaterials #E-waste
pubs.acs.org
Stable Zirconium-Piperazine Metal–Organic Frameworks for Efficient Gold Recovery
Gold’s importance in various industries, the ever-rising demand for electronics, and shrinking gold reserves all underscore the pressing need to develop effective gold recovery methods from waste. In this study, we systematically evaluate several large-pore Zirconium-carboxylate Metal–Organic Frameworks (Zr-MOFs) having slightly varied internal surface functionality (-H, -CH3, -NH2, and -NO2) in gold recovery from acidic, simulated e-waste solutions. We compare two Zr-MOFs constructed from oligophenylene ligands with four MOFs built from structurally analogous piperazine-based ligands, including two unreported frameworks. The piperazine-based frameworks offer a critical sustainability advantage: by replacing the central benzene core with piperazine, they eliminate the need for expensive Pd-catalyzed coupling chemistry required for oligophenylene synthesis. In this work, we demonstrate for the first time that Zr-piperazine MOFs exhibit stability in acidic conditions, significantly surpassing their oligophenylene-based counterparts. One developed Zr-piperazine MOF, functionalized with both amine and methyl groups, substantially outperforms all analogs, displaying the highest stability alongside a gold adsorption capacity of up to 1826 mg/g and rapid adsorption kinetics in a 40 ppm gold solution. X-ray Absorption Near-Edge Structure (XANES) studies reveal distinct gold adsorption mechanisms for primary versus tertiary amines. These findings establish piperazine-based building blocks as promising candidates for designing selective gold adsorbents for e-waste recovery applications.
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LFIM - Wendy L. Queen @lfim-epfl.bsky.social · 13/02/2026
Excited to share that our recent paper, "Enhanced MOF performance in chromium(VI) removal from water using tailored MOF–polymer composites", published @chemicalscience.rsc.org, has been selected for "the 2025 Most Popular Porous Materials Articles Collection"🎉 Read here: pubs.rsc.org/doi/D5SC05812K
pubs.rsc.org
Enhanced MOF performance in chromium(VI) removal from water using tailored MOF-polymer composites
Functionalizing the internal and external surfaces of MOFs with polymers allows for tailor-made improvements in their performance for chemical separations. In this work, various MOF/polymer composites...
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LFIM - Wendy L. Queen @lfim-epfl.bsky.social · 30/01/2026
We are delighted to announce the launch of NCCR Separations — a new National Center of Competence in Research dedicated to breakthrough separation technologies for a sustainable future! Read more: actu.epfl.ch/news/a-new-n... #NCCRSeparations #EPFL #GreenChemistry #EnergyTransition #ClimateTech
actu.epfl.ch
A new national research programme recognizes EPFL's expertise
The Swiss Confederation launches six new National Centres of Competence in Research (NCCRs). The NCCR “Separations”, which aims to accelerate research in separation sciences - the quest for chemical a...
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