Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Østergaard, Martin Bonderup

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Aalborg University

in Cooperation with on an Cooperation-Score of 37%

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Publications (19/19 displayed)

  • 2024Anomaly in the relation between thermal conductivity and crystallinity of silicate glass-ceramics14citations
  • 2024Suppressing the thermal conduction in glass–ceramic foams by controlling crystallization1citations
  • 2024Crystallinity dependence of thermal and mechanical properties of glass-ceramic foams12citations
  • 2024A self-cleaning thermocatalytic membrane for bisphenol a abatement and fouling removal2citations
  • 2023A Thermocatalytic Ceramic Membrane by Perovskite Incorporation in the Alumina Framework2citations
  • 2023Thermocatalytic Performance of LaCo1−xNixO3−δ Perovskites in the Degradation of Rhodamine B3citations
  • 2023Beneficial effect of cerium excess on in situ grown Sr0.86Ce0.14FeO3–CeO2 thermocatalysts for the degradation of bisphenol A6citations
  • 2023Beneficial effect of cerium excess on in situ grown Sr 0.86 Ce 0.14 FeO 3 –CeO 2 thermocatalysts for the degradation of bisphenol A6citations
  • 2022Fracture energy of high-Poisson’s ratio oxide glasses5citations
  • 2021The foaming mechanism of glass foams prepared from the mixture of Mn 3 O 4 , carbon and CRT panel glass15citations
  • 2021The foaming mechanism of glass foams prepared from the mixture of Mn3O4, carbon and CRT panel glass15citations
  • 2021Degradation of organic micropollutants in water using a novel thermocatalytic membranecitations
  • 2020Structure Dependence of Poisson’s Ratio in Cesium Silicate and Borate Glasses8citations
  • 2019Revisiting the Dependence of Poisson’s Ratio on Liquid Fragility and Atomic Packing Density in Oxide Glasses34citations
  • 2018Effect of alkali phosphate content on foaming of CRT panel glass using Mn3O4 and carbon as foaming agents28citations
  • 2017Influence of foaming agents on solid thermal conductivity of foam glasses prepared from CRT panel glass38citations
  • 2017Thermal Conductivity of Foam Glasses Prepared using High Pressure Sinteringcitations
  • 2017Foaming Glass Using High Pressure Sinteringcitations
  • 2016Influence of foaming agents on both the structure and the thermal conductivity of silicate glassescitations

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Thomsen, Line
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Yue, Yuanzheng
10 / 86 shared
Johra, Hicham
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Jensen, Lars Rosgaard
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Deganello, Francesca
6 / 11 shared
Wang, Deyong
1 / 7 shared
Boffa, Vittorio
6 / 21 shared
Egea-Corbacho, Agata
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Jørgensen, Mads Koustrup
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Veis, Andreas
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Parola, Valeria La
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Smedskjær, Morten Mattrup
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To, Theany
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Gamst, Christian
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Iversen, Niels
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Petersen, Rasmus Rosenlund
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König, J.
2 / 5 shared
Bødker, Mikkel Sandfeld
1 / 13 shared
Bockowski, Michal
3 / 22 shared
Hansen, Søren Ravn
1 / 2 shared
Januchta, Kacper
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Rzoska, Sylwester J.
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Bauchy, Mathieu
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König, Jakob
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Co-Authors (by relevance)

  • Thomsen, Line
  • Yue, Yuanzheng
  • Johra, Hicham
  • Jensen, Lars Rosgaard
  • Deganello, Francesca
  • Wang, Deyong
  • Boffa, Vittorio
  • Egea-Corbacho, Agata
  • Jørgensen, Mads Koustrup
  • Veis, Andreas
  • Christensen, Benjamin Hjelm
  • Parola, Valeria La
  • Liotta, Leonarda Francesca
  • La Parola, Valeria
  • Smedskjær, Morten Mattrup
  • To, Theany
  • Gamst, Christian
  • Iversen, Niels
  • Petersen, Rasmus Rosenlund
  • König, J.
  • Bødker, Mikkel Sandfeld
  • Bockowski, Michal
  • Hansen, Søren Ravn
  • Januchta, Kacper
  • Rzoska, Sylwester J.
  • Bauchy, Mathieu
  • König, Jakob
OrganizationsLocationPeople

article

Beneficial effect of cerium excess on in situ grown Sr0.86Ce0.14FeO3–CeO2 thermocatalysts for the degradation of bisphenol A

  • Liotta, Leonarda Francesca
  • Deganello, Francesca
  • Østergaard, Martin Bonderup
  • Boffa, Vittorio
  • Jørgensen, Mads Koustrup
  • Parola, Valeria La
Abstract

Ce-doped SrFeO3 perovskite-type compounds are known as good thermocatalysts for the abatement of wastewater contaminants of emerging concern. In this work, Sr0.86Ce0.14FeO3–CeO2 perovskite-oxide systems with increasing amounts of cerium excess (0, 5, 10 and 15 mol% Ce), with respect to its maximum solubility in the perovskite, were prepared in one-pot by solution combustion synthesis and the effects of cerium excess on the chemical physical properties and thermocatalytic activity in the bisphenol A degradation were evaluated. The powders were characterized by powder X-ray diffraction combined with Rietveld refinement, X-ray photoelectron spectroscopy, thermal gravimetry, temperature programmed reduction, nitrogen adsorption, scanning electron microscopy and energy dispersive X-ray spectroscopy techniques. Results highlight that the perovskite structural, redox, surface, and morphological properties are affected by the in situ co-growth of the main perovskite phase and ceria and that a larger cerium excess has a beneficial effect on the thermocatalytic performance of the perovskite oxide–ceria biphasic system, although ceria is not active as a thermocatalyst itself. Perovskite properties and performance are enhanced by the tetragonal distortion induced by the introduction of cerium excess in the synthesis. It is supposed that a larger oxygen mobility and an easier reducibility are among the most relevant features that contribute to superior thermocatalytic properties of these perovskite oxide-based systems. These results also suggest new perspectives in the nanocomposite preparation and their catalytic applications.

Topics
  • nanocomposite
  • perovskite
  • impedance spectroscopy
  • surface
  • compound
  • phase
  • mobility
  • scanning electron microscopy
  • x-ray photoelectron spectroscopy
  • Oxygen
  • Nitrogen
  • powder X-ray diffraction
  • combustion
  • X-ray spectroscopy
  • Cerium