Every reference with a DOI in the deposited reference list resolved to a known
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The 31 checked references that resolve
resolves10.1039/C4CS00094CApplications of metal–organic frameworks in heterogeneous supramolecular catalysis
resolves10.1039/C5CS00837AZr-based metal–organic frameworks: design, synthesis, structure, and applications
resolves10.1039/C8SC04610GCobalt-bridged secondary building units in a titanium metal–organic framework catalyze cascade reduction of N-heteroarenes
resolves10.1039/c0cs00137fTitanium oxo-clusters: precursors for a Lego-like construction of nanostructured hybrid materials
resolves10.1002/anie.201809762Titanium‐Carboxylate Metal‐Organic Framework Based on an Unprecedented Ti‐Oxo Chain Cluster
resolves10.1002/ange.201809762Titanium‐Carboxylate Metal‐Organic Framework Based on an Unprecedented Ti‐Oxo Chain Cluster
resolves10.1107/S0021889813027714Three-dimensional rotation electron diffraction: software<i>RED</i>for automated data collection and data processing
resolves10.1107/S1600576718015145High-throughput continuous rotation electron diffraction data acquisition<i>via</i>software automation
resolves10.1021/cr200304eSynthesis of Metal-Organic Frameworks (MOFs): Routes to Various MOF Topologies, Morphologies, and Composites
resolves10.1021/jacs.6b08273Tuning the Surface Chemistry of Metal Organic Framework Nodes: Proton Topology of the Metal-Oxide-Like Zr<sub>6</sub> Nodes of UiO-66 and NU-1000
resolves10.1021/jacs.6b01233A Titanium–Organic Framework as an Exemplar of Combining the Chemistry of Metal– and Covalent–Organic Frameworks
resolves10.1002/anie.201504426A Simple NMR‐Based Method for Studying the Spatial Distribution of Linkers within Mixed‐Linker Metal–Organic Frameworks
resolves10.1002/ange.201504426A Simple NMR‐Based Method for Studying the Spatial Distribution of Linkers within Mixed‐Linker Metal–Organic Frameworks
resolves10.1016/j.jmr.2017.04.008Improved resolution and simplification of the spin-diffusion-based NMR method for the structural analysis of mixed-linker MOFs
resolves10.1016/j.fuel.2016.10.045Synthesis of hierarchical TS-1 zeolite via a novel three-step crystallization method and its excellent catalytic performance in oxidative desulfurization
resolves10.1016/j.jcat.2013.05.021Catalytic performance and stability of (V) MIL-47 and (Ti) MIL-125 in the oxidative desulfurization of heterocyclic aromatic sulfur compounds
resolves10.1039/C5CC03958DProduction of ultra-deep sulfur-free diesels using a sustainable catalytic system based on UiO-66(Zr)
resolves10.1016/j.jcat.2011.09.014The coordinatively saturated vanadium MIL-47 as a low leaching heterogeneous catalyst in the oxidation of cyclohexene
resolves10.1002/anie.201108357An Amine‐Functionalized Titanium Metal–Organic Framework Photocatalyst with Visible‐Light‐Induced Activity for CO<sub>2</sub> Reduction
resolves10.1002/ange.201108357An Amine‐Functionalized Titanium Metal–Organic Framework Photocatalyst with Visible‐Light‐Induced Activity for CO<sub>2</sub> Reduction
resolves10.1002/anie.201505512A Flexible Photoactive Titanium Metal–Organic Framework Based on a [Ti<sup>IV</sup><sub>3</sub>(μ<sub>3</sub>‐O)(O)<sub>2</sub>(COO)<sub>6</sub>] Cluster
resolves10.1002/ange.201505512A Flexible Photoactive Titanium Metal–Organic Framework Based on a [Ti<sup>IV</sup><sub>3</sub>(μ<sub>3</sub>‐O)(O)<sub>2</sub>(COO)<sub>6</sub>] Cluster
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