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Henke Group

@henkegroup.bsky.social
274 followers 123 following 11 posts

Home at the Dept. of Chemisty and Chemical Biology, TU Dortmund www.ccb.tu-dortmund.de/henke Functional porous materials, MOFs. Flexible, responsive, crystalline, amorphous, glassy...

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Jan-Benedikt Weiß @jbweiss-chem.bsky.social · 24/08/2026
Now published with open access @natmater.nature.com. In addition to the preprint, we now show that the concept is not just applicable to ZIFs but also to carboxylate MOFs! doi.org/10.1038/s415...
doi.org
Flux-mediated ligand exchange restructures metal–organic framework glasses - Nature Materials
The organic ligand phenanthroline acts as a flux to vitrify otherwise non-glass-forming metal–organic frameworks as well as restructuring the coordination environment and network topology of the resul...
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Henke Group @henkegroup.bsky.social · 24/08/2026
How to rewire a glass from the inside while it is being formed? In Nat Mater @natureportfolio.nature.com, @jbweiss-chem.bsky.social shows that phenanthroline does more than lower the melting point of MOFs: It enters the metal coordination sphere and rewires the glass network doi.org/10.1038/s415...
doi.org
Flux-mediated ligand exchange restructures metal–organic framework glasses - Nature Materials
The organic ligand phenanthroline acts as a flux to vitrify otherwise non-glass-forming metal–organic frameworks as well as restructuring the coordination environment and network topology of the resul...
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Henke Group @henkegroup.bsky.social · 19/06/2026
New paper out @jacs.acspublications.org: Led by our superstar postdoc Zeyu Fan, we show that zinc halides act as reactive co-network formers to create mixed halide-imidazolate MOF glasses. A new route to vitrify otherwise non-meltable MOFs and tune gas sorption properties. doi.org/10.1021/jacs...
doi.org
Zinc Halide Flux-Assisted Vitrification of Metal–Organic Frameworks Enables Chemical Diversification and Tunable Gas Sorption
The vitrification of metal–organic frameworks (MOFs) enables melt processing into bulk, shaped and membrane-type porous materials, yet the limited chemical diversity of existing MOF glass formers rest...
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Henke Group @henkegroup.bsky.social · 07/05/2026
We love frameworks, but this time we went molecular in collaboration with our friends from @steffengroup.bsky.social Check out Zeyu Fan’s work in @angewandtechemie.bsky.social on CPL-active chiral molecular metal-organic glasses showing intriguing thermal properties and room-temperature TADF.
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Henke Group @henkegroup.bsky.social · 05/05/2026
Now out in Nature Chemistry, we show how alkali modifiers tune MOF glasses. Big thanks to our brilliant collaborators at Birmingham for NMR/DFT and Bochum for atom probe tomography. Check it out: www.nature.com/articles/s41...
nature.com
Alkali-ion-modified zeolitic imidazolate framework glasses - Nature Chemistry
The properties of metal–organic framework glasses can be modulated by additives, but understanding how they modify the glass network is challenging. Now, alkali-modifier sites in MOF glasses have been...
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Henke Group @henkegroup.bsky.social · 05/12/2025
Excited about our new @jacs.acspublications.org paper reporting the high-pressure behaviour of MOF-74-type materials 🗜️💎https://doi.org/10.1021/jacs.5c14027. The coolest part: an amine-appended MOF loses long-range order under pressure but fully regains crystallinity when the pressure is released.
doi.org
Understanding the High-Pressure Behavior of Honeycomb-Like Metal–Organic Frameworks with Open Metal Sites: Influence of Metal Identity, Linker Extension and Diamine Functionalization
MOF-74 (M2(dobdc); dobdc4– = 2,5-dioxido-1,4-benzenedicarboxylate) and its isoreticular derivatives represent a chemically versatile class of metal–organic frameworks (MOFs) with high densities of ope...
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Henke Group @henkegroup.bsky.social · 04/12/2025
Our first paper dealing with a simple molecule landed in Adv Sci! We show that BINAP can form chiral molecular glasses. Circularly polarised emission and quantum yield jump drastically upon vitrification. Big cheers to the Steffen group for contributing the photophysics. doi.org/10.1002/advs...
doi.org
Luminescent Chiral Molecular Glasses by Melt‐Quenching Enantiopure BINAP
Melt-quenching of enantiopure BINAP yields transparent chiral molecular glasses that retain axial chirality and display blue-shifted luminescence together with strongly enhanced circularly polarized ...
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Reposted by Henke Group
Andreas Schneemann @schneesci.bsky.social · 02/10/2025
Now in @chemcomm.rsc.org - the Xenon induced phase transition in ZIF-4 uncovered by solid state NMR during 129Xe adsorption. Congratulations to Tobias from the Brunner group @tudresden.bsky.social and @henkegroup.bsky.social, @wenlong-xue.bsky.social ! pubs.rsc.org/en/content/a...
pubs.rsc.org
Xenon adsorption-induced flexibility of the zeolitic imidazolate framework ZIF-4 observed by in situ 129Xe NMR spectroscopy
In situ 129Xe NMR spectroscopy reveals an unexpected, xenon adsorption-induced flexibility of ZIF-4. Beyond a certain threshold pressure, xenon induces a structural transition at low temperature. This...
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Reposted by Henke Group
MOF Papers @mofpapers.bsky.social · 03/12/2025
Understanding the High-Pressure Behavior of Honeycomb-Like Metal–Organic Frameworks with Open Metal Sites: Influence of Metal Identity, Linker Extension and Diamine Functionalization dx.doi.org/10.1021/jacs.5c14027
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Henke Group @henkegroup.bsky.social · 26/08/2025
Our first step into disordered magnetism is out in Advanced Functional Materials! We show a Fe²⁺ MOF glass with spin-glass freezing at ~14 K — magnetism driven by topological disorder. Check it out: advanced.onlinelibrary.wiley.com/doi/10.1002/... Thanks to @dfg.de and TU Dortmund for support.
advanced.onlinelibrary.wiley.com
Emergent Spin‐Glass Behavior in an Iron(II)‐Based Metal–Organic Framework Glass
A one-pot, solvent-free synthesis yields an Fe2+-based metal-organic framework (MOF) glass featuring a continuous random network structure. The material exhibits spin-glass freezing at 14 K, driven b...
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Reposted by Henke Group
MOF Papers @mofpapers.bsky.social · 15/08/2025
Emergent Spin‐Glass Behavior in an Iron(II)‐Based Metal–Organic Framework Glass advanced.onlinelibrary.wiley.com/do…
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Reposted by Henke Group
Jan-Benedikt Weiß @jbweiss-chem.bsky.social · 11/08/2025
Meltable MOFs are unique in many ways. In our new preprint we show that you can let molten MOFs react with an organic ligand and obtain some interesting glasses. 🔍 A highly collaborative effort. doi.org/10.26434/che...
doi.org
Organic flux-mediated ligand exchange enables coordination sphere engineering and topological restructuring in metal-organic framework glasses
Melt-quenched glasses derived from metal-organic frameworks (MOFs) combine the processability of glasses with the modularity and microporosity of MOFs, yet remain structurally and functionally less di...
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Reposted by Henke Group
MOF Papers @mofpapers.bsky.social · 24/04/2025
Mechanochemical Synthesis Enables Melting, Glass Formation and Glass–Ceramic Conversion in a Cadmium-Based Zeolitic Imidazolate Framework dx.doi.org/10.1021/jacs.5c02767
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Henke Group @henkegroup.bsky.social · 25/04/2025
New paper just out @jacs.acspublications.org In his 3rd first-author paper from his PhD, Wen-Long Xue shows that mechanochemical synthesis enables melting & glass formation of a Cd-based MOF, plus controlled nanocrystal growth to form MOF glass-ceramics. A great team effort! doi.org/10.1021/jacs...
doi.org
Mechanochemical Synthesis Enables Melting, Glass Formation and Glass–Ceramic Conversion in a Cadmium-Based Zeolitic Imidazolate Framework
Metal-organic frameworks (MOFs) are versatile materials with tunable properties and broad applications. Here, we report the first cadmium-based zeolitic imidazolate framework (ZIF) glass, prepared by melt-quenching sub-micrometer-sized Cd(im)2 particles (im– = imidazolate) obtained via mechanochemical synthesis. This route increases defect density and reduces crystallite domain size, lowering the melting temperature from 461 °C (for larger solution-synthesized microcrystals) to 455 °C, thereby mitigating thermal decomposition during melting. Crystalline Cd(im)2 adopts a two-fold interpenetrated diamondoid (dia-c) topology, assembled from tetrahedral Cd2+ centers and im– linkers. Rapid cooling of the Cd(im)2 melt yields a monolithic glass with a glass transition temperature (Tg) of 175 °C. Structural analysis confirms that short-range connectivity within individual networks is maintained, whereas interactions between the interpenetrated networks are disrupted in the glass. Upon reheating, partial recrystallization produces a single-component glass–ceramic with enhanced mechanical properties, an unprecedented behavior in melt-quenched ZIF glasses. Investigations of thermal parameters (cooling rates) and partial linker substitution reveal strategies for tuning the phase behavior of both glass and glass–ceramic. These findings extend ZIF glass systems to second-row transition metal ions and underscore mechanochemical synthesis as a tool for tailoring the thermal properties of MOFs. This dual-phase functionality, combining glassy and crystalline domains of identical composition within a single material, offers potential for applications in thermal energy storage, phase change memory, and optics.
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Reposted by Henke Group
mmhansmann.bsky.social @mmhansmann.bsky.social · 20/02/2025
We start our first post on Bluesky with a firework! Very proud of a brilliant team to publish our work on C(sp3)-atom transfer @science.org. www.science.org/doi/10.1126/... It has been a very exciting journey. Thanks @erc.europa.eu
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Andreas Schneemann @schneesci.bsky.social · 08/02/2025
Beware of the defects in ZIFs and their glasses ⚠️ With @henkegroup.bsky.social and the Brunner group @tudresden.bsky.social by NMR we observed that dangling linker imidazoles react with CO2 to form carbamates during adsorption studies - now in Chem. Mater. @acs.org ! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Defect Identification in Zeolitic Imidazolate Framework Glasses by Solid-State NMR Spectroscopy Using 13CO2 as Probe
Melt-quenched glasses from zeolitic imidazolate frameworks (ZIFs), a subset of metal–organic frameworks (MOFs) constructed from imidazolate linkers and divalent metal ions, represent a novel class of ...
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Reposted by Henke Group
Frederik Haase @frederikhaase.bsky.social · 31/01/2025
Square-triangle tilings could be an infinite topological playground for 2D COFs, but they require precise linker size matching to work. Here we present a system, where we see evidence of linker mixing and heteroepitaxy due to size matching.
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Henke Group @henkegroup.bsky.social · 24/01/2025
Here’s our second post! Thrilled to share our second preprint of the year: a new method for modifying metal-organic framework glasses, complete with detailed structural analysis of the modified materials. A true team effort with amazing collaborators! Check it out here: doi.org/10.26434/che...
doi.org
Sodium-Ion-Modified Zeolitic Imidazolate Framework Glasses
Modifying glass compositions is key to creating silicate-based glasses for technologies like optical fibres, catalytic supports, protective coatings, and separation membranes. Here, we extend this con...
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