Low‐Valent Metals in Metal‐Organic Frameworks Via Post‐Synthetic Modification
Metal‐organic frameworks (MOFs) provide uniquely tunable, periodic platforms for site‐
isolation of reactive low‐valent metal complexes of relevance in modern catalysis …
isolation of reactive low‐valent metal complexes of relevance in modern catalysis …
The ionic liquid-based electrolytes during their charging process: Movable endpoints of overscreening effect near the electrode interface
Hypothesis Adding solvents to ionic liquids (ILs) can lead to the suppression of the
overscreening effect near an electrode interface. Also, this suppression can be observed in …
overscreening effect near an electrode interface. Also, this suppression can be observed in …
MOF UiO-66 and its composites: design strategies and applications in drug and antibiotic removal
A Iqbal, H Ullah, M Iqbal, MS Khan, RS Ullah… - … Science and Pollution …, 2025 - Springer
Antibiotics and pharmaceuticals exert significant environmental risks to aquatic ecosystems
and human health. Many effective remedies to this problem have been developed through …
and human health. Many effective remedies to this problem have been developed through …
A zero-valent palladium cluster-organic framework
X Liu, JN McPherson, CE Andersen… - Nature …, 2024 - nature.com
Acquiring spatial control of nanoscopic metal clusters is central to their function as efficient
multi-electron catalysts. However, dispersing metal clusters on surfaces or in porous hosts is …
multi-electron catalysts. However, dispersing metal clusters on surfaces or in porous hosts is …
Understanding the structural landscape of Mn-based MOFs formed with hinged pyrazole carboxylate linkers
Metal–organic frameworks (MOFs) capable of post-synthetic metalation (PSMet) have
garnered significant interest as supports for catalytic metals. The Mn-based MOF, MnMOF-1 …
garnered significant interest as supports for catalytic metals. The Mn-based MOF, MnMOF-1 …
Variation in the Sorption Properties of a Pair of Highly Flexible, Isostructural MOFs Exhibiting Single-Crystal-to-Single-Crystal Transformations Rarely Observed in …
KG Muguru, W Mogodi, CL Oliver - Crystal Growth & Design, 2024 - ACS Publications
Two mixed-ligand metal–organic frameworks (MOFs),[Co3 (ia) 3 (bppdo)(MeOH)] n· n
(DMF)(1) and [Mn3 (ia) 3 (bppdo)(MeOH)] n· n (DMF)(2), have been synthesized, where ia …
(DMF)(1) and [Mn3 (ia) 3 (bppdo)(MeOH)] n· n (DMF)(2), have been synthesized, where ia …
Variable dimensionality of europium (III) and terbium (III) coordination compounds with a flexible hexacarboxylate ligand
A reaction between 4, 4′, 4 ″-(benzene-1, 3, 5-triyltris (oxy)) triphthalic acid (H6L) and
lanthanide (III) nitrates (Ln= Eu3+, Tb3+) in water under the same conditions gave a …
lanthanide (III) nitrates (Ln= Eu3+, Tb3+) in water under the same conditions gave a …
Toward Controlled Partial Desolvation of Guest-Responsive Metal–Organic Frameworks for Precise Porosity Control
Desolvation of guest-responsive metal–organic frameworks (MOFs) under dynamic vacuum
often leads to the collapse of the pores, whereas supercritical CO2 (SC-CO2) drying is found …
often leads to the collapse of the pores, whereas supercritical CO2 (SC-CO2) drying is found …
1D porous Zinc (II) Coordination Polymer as Fluorescent Chemosensors for Nitrobenzene and Fe3+
AX Zhu, M Deng, XD Fang, XY Li, W Guo… - Indian Journal of …, 2024 - or.niscpr.res.in
This paper studies the luminescence-sensing properties of 1D porous zinc coordination
polymer [Zn (3-tba) 2]· DMA (1, 3-Htba= 3-(4H-1, 2, 4-triazol-4-yl) benzoic acid, DMA= N, N …
polymer [Zn (3-tba) 2]· DMA (1, 3-Htba= 3-(4H-1, 2, 4-triazol-4-yl) benzoic acid, DMA= N, N …
1D porous zinc (II) coordination polymer as fluorescent chemosensors for nitrobenzene and Fe3+
M Deng, XD Fang, XY Li, W Guo, QQ Xu, AX Zhu… - 2024 - nopr.niscpr.res.in
This paper studies the luminescence-sensing properties of 1D porous zinc coordination
polymer [Zn (3-tba) 2] ꞏDMA (1, 3-Htba= 3-(4H-1, 2, 4-triazol-4-yl) benzoic acid, DMA= N, N …
polymer [Zn (3-tba) 2] ꞏDMA (1, 3-Htba= 3-(4H-1, 2, 4-triazol-4-yl) benzoic acid, DMA= N, N …