Computational Insights Into the Reactivity at the Sulfur Atoms of M 3 S 4 (M = Mo, W) Clusters: The Mechanism of [3 + 2] Cycloaddition With Alkynes
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Elsevier
Reference62 articles.
1. Topological analysis of the bonds in incomplete cuboidal [Mo3S4] clusters
2. Chalcogenide-bridged cuboidal clusters with M4Q4 (M = Mo, W; Q = S, Se, Te) cores
3. Behavioral Patterns of Heterometallic Cuboidal Derivatives of [M3Q4(H2O)9]4+ (M = Mo, W; Q = S, Se)
4. Effect of equivalent and nonequivalent sites on the kinetics of equilibration of thiocyanate with molybdenum oxide hydrate ([Mo3O4(H2O)9]4+)
5. Kinetics of the substitution of thiocyanate and oxalate on nonaaquatetraoxotrimolybdenum(4+): high acidity of the aqua ligands and the dominance of conjugate-base pathways
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1. Spin-Crossing in the (Z)-Selective Alkyne Semihydrogenation Mechanism Catalyzed by Mo3S4 Clusters: A Density Functional Theory Exploration;Inorganic Chemistry;2024-01-04
2. Efficient (Z)-selective semihydrogenation of alkynes catalyzed by air-stable imidazolyl amino molybdenum cluster sulfides;Inorganic Chemistry Frontiers;2023
3. Catalytic Hydrogenation of Azobenzene in the Presence of a Cuboidal Mo3S4 Cluster via an Uncommon Sulfur-Based H2 Activation Mechanism;ACS Catalysis;2020-12-29
4. Benchmarking of DFT methods using experimental free energies and volumes of activation for the cycloaddition of alkynes to cuboidal Mo 3 S 4 clusters;International Journal of Quantum Chemistry;2020-06-25
5. Cuboidal Mo3S4 Clusters as a Platform for Exploring Catalysis: A Three-Center Sulfur Mechanism for Alkyne Semihydrogenation;ACS Catalysis;2018-07-09
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