F
Francis Verpoort
Researcher at Wuhan University of Technology
Publications - 490
Citations - 15937
Francis Verpoort is an academic researcher from Wuhan University of Technology. The author has contributed to research in topics: Catalysis & Ruthenium. The author has an hindex of 56, co-authored 443 publications receiving 12506 citations. Previous affiliations of Francis Verpoort include Wuhan University & Dalian University of Technology.
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Journal ArticleDOI
Engineering of a highly stable metal-organic Co-film for efficient electrocatalytic water oxidation in acidic media
Hussein A. Younus,Hussein A. Younus,Matthias Vandichel,Matthias Vandichel,Nazir Ahmad,Elisabet Ahlberg,Michael Busch,Francis Verpoort,Francis Verpoort +8 more
TL;DR: In this paper, an acid-stable and active cobalt-based metal-organic film is reported that competes well with most reported earth-abundant catalysts for water oxidation under similar conditions.
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Synthesis and micellization of amphiphilic biodegradable methoxypolyethylene glycol/poly(d,l-lactide)/polyphosphate block copolymer
TL;DR: In this paper, a new amphiphilic biodegradable methoxypolyethylene glycol/poly( d, l -lactide)/poly(ethyl ethylene phosphate) (MPEG- b -PLA-b -PEEP) block copolymer was synthesized by ring-opening polymerization of ethyl ethylene pyrophosphate (EEP) with methoxymolyethylenes glycol(poly(d, l-l-actide)(MPEG)-b -PLA) as a macroinitiator, which was prepared
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Alkyl group-tagged ruthenium indenylidene complexes: synthesis, characterization and metathesis activity
Baoyi Yu,Fatma B. Hamad,Karen Leus,A. A. Lyapkov,Kristof Van Hecke,Francis Verpoort,Francis Verpoort,Francis Verpoort +7 more
TL;DR: In this paper, the synthesis of ruthenium indenylidene catalysts was reported by means of IR, elemental analysis, NMR and single crystal X-Ray diffraction analysis.
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Tungsten carbonyl precursors in catalyzed olefin metathesis
L. Verdonck,Ar Bossuyt,A. Praet,Francis Verpoort,J. Geeraert,D.F. van de Vondel,G.P. Van Der Kelen +6 more
TL;DR: In this article, the XW(CO) 3 π-C 5 H 5 (XCl, I) precursors have been characterized by HPLC-scanning UV-Vis, IR and ESCA spectroscopy.
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Solid-state transformation in porous metal-organic frameworks based on polymorphic-pillared net structure: Generation of tubular shaped MOFs
Somboon Chaemchuen,Somboon Chaemchuen,Kui Zhou,Mekhman S. Yusubov,Pavel S. Postnikov,Nikom Klomkliang,Francis Verpoort,Francis Verpoort,Francis Verpoort +8 more
TL;DR: In this article, a solid-state polymorphic transformation of MOF materials from a pillared kagome-lattice form (ZnBDkgm or CoBD kgm) to a tubular square lattice was investigated, and a transformation mechanism of disconnection-deformation rebuilding was elucidated based on the experiment.