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Brown, Normanda; Zhang, Qingsong; Alsudairy, Ziad; Dun, Chaochao; Nailwal, Yogendra; Campbell, Allea; Harrod, Chelsea; Chen, Linfeng; Williams, Spirit; Urban, Jeffrey J; et al (, ACS Sustainable Chemistry & Engineering)Palladium-encapsulated covalent organic frameworks (Pd/COFs) have garnered enormous attention in heterogeneous catalysis. However, the dominant ex situ encapsulation synthesis is tedious (multistep), time-consuming (typically 4 days or more), and involves the use of noxious solvents. Here we develop a mechanochemical in situ encapsulation strategy that enables the one-step, timeefficient, and environmentally benign synthesis of Pd/COFs. By ball milling COF precursors along with palladium acetate (Pd(OAc)2) in one pot under air at room temperature, Pd/COF hybrids were readily synthesized within an hour, exhibiting high crystallinity, uniform Pd dispersion, and superb scalability up to gram scale. Moreover, this versatile strategy can be extended to the synthesis of three Pd/COFs. Remarkably, the resulting Pd/DMTP-TPB showcases extraordinary activity (96−99% yield in 1 h at room temperature) and broad substrate scope (>10 functionalized biaryls) for the Suzuki−Miyaura coupling reaction of aryl bromides and arylboronic acids. Furthermore, the heterogeneity of Pd/DMTP-TPB is verified by recycling and leaching tests. The mechanochemical in situ encapsulation strategy disclosed herein paves a facile, rapid, scalable, and environmentally benign avenue to access metal/COF catalysts for efficient heterogeneous catalysis.more » « less
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Geisenhoff, Jessica Q.; Yin, Hang; Oget, Natacha; Chang, Haeun; Chen, Linfeng; Schimpf, Alina M. (, Frontiers in Nanotechnology)We report a low-temperature colloidal synthesis of WSe2nanocrystals from tungsten hexacarbonyl and diphenyl diselenide in trioctylphosphine oxide (TOPO). We identify TOPO-substituted intermediates, W(CO)5TOPO andcis-W(CO)4(TOPO)2by infrared spectroscopy. To confirm these assignments, we synthesize aryl analogues of phosphine-oxide-substituted intermediates, W(CO)5TPPO (synthesized previously, TPPO = triphenylphosphine oxide) andcis-W(CO)4(TPPO)2andfac-W(CO)3(TPPO)3(new structures reported herein). Ligation of the tungsten carbonyl by either the alkyl or aryl phosphine oxides results in facile labilization of the remaining CO, enabling low-temperature decomposition to nucleate WSe2nanocrystals. The reactivity in phosphine oxides is contrasted with syntheses containing phosphine ligands, where substitution results in decreased CO labilization and higher temperatures are required to induce nanocrystal nucleation.more » « less
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Alves, Liana S.; Chen, Linfeng; Lemmon, Carl E.; Gembicky, Milan; Xu, Mingjie; Schimpf, Alina M. (, ACS Materials Letters)
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