prof. dr. Vladimir Galvita
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In-situ XAS study of trifunctional Ni-Ca-Fe materials for super-dry reforming.
(2025) -
- Journal Article
- open access
Evolution of Low Z-Elements in a Ni/MgFeAlO 4 Catalyst during Reaction: Insight from In Situ XRS
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- Journal Article
- open access
Controlling Pt Nanoparticle Sintering by Sub-Monolayer MgO ALD Thin Films
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Methane Conversion Routes
Vladimir Galvita (UGent) and René Bos (UGent)(2023) -
Transient APXPS as a tool to characterize the kinetics of alloy restructuring : application to Sn-poor PtSn ALD-derived nanoparticles
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Probing the performance of a Ni–Ca–Ce dual-functional material for integrated CO2 capture and utilization from a synthetic flue gas approximating industrial composition
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- Conference Paper
- C3
- open access
Evolution of low Z elements in a super dry reforming catalyst : insight by X-ray Raman scattering
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- Conference Paper
- C3
- open access
Multifunctional materials for CO2 capture and conversion
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Intensifying biomass and solid waste pyrolysis by chemical looping
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- Journal Article
- A1
- open access
Dual-element modulation excitation XAS to probe the redox surface chemistry of a Ni–Fe dry reforming catalyst
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- Journal Article
- A1
- open access
High temperature H2S removal via CO2-assisted chemical looping over ZrO2-modified Fe2O3
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- Journal Article
- A2
- open access
Chemical looping : a technology platform for upcycling low-grade industrial resources
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- Journal Article
- A1
- open access
Tuning CO2 methanation selectivity via MgO/Ni interfacial sites
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In-situ XRS and XES to follow Ni/MgFeAlO4 restructuring upon high-temperature redox treatment and methane dry reforming
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Modulation engineering : rational stimulation design for enhanced frequency content in modulation-excitation experiments