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Titre : Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol Type de document : document électronique Auteurs : Dmitri A. Bulushev, Auteur Editeur : Basel [Switzerland] : MDPI Année de publication : 2020 Importance : 122 p. Présentation : ill., couv. ill. ISBN/ISSN/EAN : 978-3-03936-381-0 Langues : Anglais (eng) Catégories : Open Access Publications Tags : formic acid decomposition hydrogen production multifuel processor copper catalyst oxygenates fuel cell Index. décimale : 665.81 Hydrogène Résumé : This Special Issue is related to studies of the hydrogen production from formic acid decomposition. It is based on five research papers and two reviews. The reviews discuss the liquid phase formic acid decomposition over bimetallic (PdAg), molecular (Ru, Ir, Fe, Co), and heterogenized molecular catalysts. The gas-phase reaction is studied over highly dispersed Pd, Pt, Au, Cu, and Ni supported catalysts. It is shown that the nature of the catalyst’s support plays an important role for the reaction. Thus, N-doping of the carbon support provides a significant promotional effect. One of the reasons for the high activity of the N-doped catalysts is the formation of single-atom active sites stabilized by pyridinic N species present in the support. It is demonstrated that carbon materials can be N-doped in different ways. It can be performed either directly from N-containing compounds during the carbon synthesis or by a post-synthetic deposition of N-containing compounds on the carbon support with known properties. The Issue could be useful for specialists in catalysis and nanomaterials as well as for graduate students studying chemistry and chemical engineering. The reported results can be applied for development of catalysts for the hydrogen production from different liquid organic hydrogen carriers. En ligne : https://doi.org/10.3390/books978-3-03936-381-0 Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol [document électronique] / Dmitri A. Bulushev, Auteur . - Basel (Switzerland) : MDPI, 2020 . - 122 p. : ill., couv. ill.
ISBN : 978-3-03936-381-0
Langues : Anglais (eng)
Catégories : Open Access Publications Tags : formic acid decomposition hydrogen production multifuel processor copper catalyst oxygenates fuel cell Index. décimale : 665.81 Hydrogène Résumé : This Special Issue is related to studies of the hydrogen production from formic acid decomposition. It is based on five research papers and two reviews. The reviews discuss the liquid phase formic acid decomposition over bimetallic (PdAg), molecular (Ru, Ir, Fe, Co), and heterogenized molecular catalysts. The gas-phase reaction is studied over highly dispersed Pd, Pt, Au, Cu, and Ni supported catalysts. It is shown that the nature of the catalyst’s support plays an important role for the reaction. Thus, N-doping of the carbon support provides a significant promotional effect. One of the reasons for the high activity of the N-doped catalysts is the formation of single-atom active sites stabilized by pyridinic N species present in the support. It is demonstrated that carbon materials can be N-doped in different ways. It can be performed either directly from N-containing compounds during the carbon synthesis or by a post-synthetic deposition of N-containing compounds on the carbon support with known properties. The Issue could be useful for specialists in catalysis and nanomaterials as well as for graduate students studying chemistry and chemical engineering. The reported results can be applied for development of catalysts for the hydrogen production from different liquid organic hydrogen carriers. En ligne : https://doi.org/10.3390/books978-3-03936-381-0 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 9783039363810 665.81 BUL E-Book En Ligne Génie chimique et technologies connexes Disponible
Titre : Advanced Coatings for Corrosion Protection Type de document : document électronique Auteurs : Wolfram Fürbeth, Auteur Editeur : Basel [Switzerland] : MDPI Année de publication : 2021 Importance : 222 p. ISBN/ISSN/EAN : 978-3-03943-922-5 Langues : Anglais (eng) Catégories : Open Access Publications Tags : fluorine free silanization superhydrophobic corrosion protection self-cleaning cathodic protection corrosion mitigation method potentiodynamic polarization test simulation pre-insulated pipeline zinc-rich coating cold galvanized coating durability magnesium microstructure coating corrosion polarization apatite scanning electrodeposition Ni-Fe-Co-P-CeO2 composite coating Index. décimale : 620.112 Propriétés des matériaux et essais non destructifs Résumé : Corrosion is a significant issue in many industrial fields. Among other strategies, coatings are by far the most important technology for corrosion protection of metallic surfaces. The Special Issue “Advanced Coatings for Corrosion Protection” has been launched as a means to present recent developments in any type of advanced coating for corrosion protection. This book compiles 15 contributions on metallic, inorganic, polymeric and nanoparticle enhanced coatings that provide corrosion protection as well as other functionalities. En ligne : https://doi.org/10.3390/books978-3-03943-922-5 Advanced Coatings for Corrosion Protection [document électronique] / Wolfram Fürbeth, Auteur . - Basel (Switzerland) : MDPI, 2021 . - 222 p.
ISBN : 978-3-03943-922-5
Langues : Anglais (eng)
Catégories : Open Access Publications Tags : fluorine free silanization superhydrophobic corrosion protection self-cleaning cathodic protection corrosion mitigation method potentiodynamic polarization test simulation pre-insulated pipeline zinc-rich coating cold galvanized coating durability magnesium microstructure coating corrosion polarization apatite scanning electrodeposition Ni-Fe-Co-P-CeO2 composite coating Index. décimale : 620.112 Propriétés des matériaux et essais non destructifs Résumé : Corrosion is a significant issue in many industrial fields. Among other strategies, coatings are by far the most important technology for corrosion protection of metallic surfaces. The Special Issue “Advanced Coatings for Corrosion Protection” has been launched as a means to present recent developments in any type of advanced coating for corrosion protection. This book compiles 15 contributions on metallic, inorganic, polymeric and nanoparticle enhanced coatings that provide corrosion protection as well as other functionalities. En ligne : https://doi.org/10.3390/books978-3-03943-922-5 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 9783039439225 620.112 FUR E-Book En Ligne Ingénierie et activités connexes Disponible
Titre : Advanced Materials for Solar Energy Utilization Type de document : document électronique Auteurs : Zhu, Xingwang, Auteur ; Su,Tongming, Auteur Editeur : Basel [Switzerland] : MDPI Année de publication : 2025 Importance : 204 p. ISBN/ISSN/EAN : 978-3-7258-5322-9 Langues : Anglais (eng) Catégories : Open Access Publications Tags : photocatalysis photocatalyst water splitting CO2 reduction ammonia synthesis H2O2 synthesis photochemistry pollutant degradation organic synthesis photovoltaic new energy technology Index. décimale : 621.47 Technologie de l'énergie solaire Résumé : This Reprint highlights recent advances in materials science for solar energy conversion and utilization. It presents a collection of innovative research articles and reviews focused on the development of high-performance materials for solar-driven applications such as water splitting, CO2 reduction, ammonia synthesis, pollutant degradation, H2O2 production, photovoltaic energy harvesting, and more. By integrating insights from photochemistry, catalysis, nanotechnology, and environmental science, this Reprint explores cutting-edge strategies for enhancing light absorption, charge separation, and catalytic efficiency. The featured studies demonstrate the critical role of material design—from heterojunction engineering to vacancy modification and surface functionalization—in improving the sustainability and effectiveness of solar energy technologies. This Reprint serves as a valuable reference for researchers and engineers seeking to address global challenges in clean energy and environmental remediation through advanced photochemical and photovoltaic materials. En ligne : https://doi.org/10.3390/books978-3-7258-5322-9 Advanced Materials for Solar Energy Utilization [document électronique] / Zhu, Xingwang, Auteur ; Su,Tongming, Auteur . - Basel (Switzerland) : MDPI, 2025 . - 204 p.
ISBN : 978-3-7258-5322-9
Langues : Anglais (eng)
Catégories : Open Access Publications Tags : photocatalysis photocatalyst water splitting CO2 reduction ammonia synthesis H2O2 synthesis photochemistry pollutant degradation organic synthesis photovoltaic new energy technology Index. décimale : 621.47 Technologie de l'énergie solaire Résumé : This Reprint highlights recent advances in materials science for solar energy conversion and utilization. It presents a collection of innovative research articles and reviews focused on the development of high-performance materials for solar-driven applications such as water splitting, CO2 reduction, ammonia synthesis, pollutant degradation, H2O2 production, photovoltaic energy harvesting, and more. By integrating insights from photochemistry, catalysis, nanotechnology, and environmental science, this Reprint explores cutting-edge strategies for enhancing light absorption, charge separation, and catalytic efficiency. The featured studies demonstrate the critical role of material design—from heterojunction engineering to vacancy modification and surface functionalization—in improving the sustainability and effectiveness of solar energy technologies. This Reprint serves as a valuable reference for researchers and engineers seeking to address global challenges in clean energy and environmental remediation through advanced photochemical and photovoltaic materials. En ligne : https://doi.org/10.3390/books978-3-7258-5322-9 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 9783725853229 621.47 ZHU Livre En Ligne Ingénierie et activités connexes Disponible
Titre : Advanced Photocatalysts for Energy Conversion and Environmental Applications Type de document : document électronique Auteurs : Ruowen Liang, Auteur Editeur : Basel [Switzerland] : MDPI Année de publication : 2023 Importance : 165 p. Présentation : ill., couv. ill. ISBN/ISSN/EAN : 978-3-0365-8870-4 Langues : Anglais (eng) Catégories : Open Access Publications Tags : photocatalytic photoreduction catalysis hydrogen production photocatalysis solar energy Index. décimale : 621.042 Energétique Résumé : Photocatalysis is an advanced technique that transforms solar energy into sustainable fuels and oxidizes pollutants via the aid of semiconductor photocatalysts. The main scientific and technological challenges toward effective photocatalysis are the stability, robustness, and efficiency of semiconductor photocatalysts. For major practical applications in energy conversion (i.e., hydrogen evolution, CO2 reduction, and oriented synthesis) and environmental remediation (i.e., air purification and antibacterial and wastewater treatment), highly efficient and stable photocatalysts need to be developed. This Special Issue collects published original researches on synthesizing novel photocatalytic materials and their application in energy conversion and environmental remediation.
En ligne : https://doi.org/10.3390/books978-3-0365-8870-4 Advanced Photocatalysts for Energy Conversion and Environmental Applications [document électronique] / Ruowen Liang, Auteur . - Basel (Switzerland) : MDPI, 2023 . - 165 p. : ill., couv. ill.
ISBN : 978-3-0365-8870-4
Langues : Anglais (eng)
Catégories : Open Access Publications Tags : photocatalytic photoreduction catalysis hydrogen production photocatalysis solar energy Index. décimale : 621.042 Energétique Résumé : Photocatalysis is an advanced technique that transforms solar energy into sustainable fuels and oxidizes pollutants via the aid of semiconductor photocatalysts. The main scientific and technological challenges toward effective photocatalysis are the stability, robustness, and efficiency of semiconductor photocatalysts. For major practical applications in energy conversion (i.e., hydrogen evolution, CO2 reduction, and oriented synthesis) and environmental remediation (i.e., air purification and antibacterial and wastewater treatment), highly efficient and stable photocatalysts need to be developed. This Special Issue collects published original researches on synthesizing novel photocatalytic materials and their application in energy conversion and environmental remediation.
En ligne : https://doi.org/10.3390/books978-3-0365-8870-4 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 9783036588704 621.042 LIA E-Book En Ligne Physique appliquée Disponible
Titre : Advanced Photocatalytic Materials Type de document : document électronique Auteurs : Vlassios Likodimos, Auteur Editeur : Basel [Switzerland] : MDPI Année de publication : 2022 Importance : 165 p. Présentation : ill., couv. ill. ISBN/ISSN/EAN : 978-3-0365-1033-0 Langues : Anglais (eng) Catégories : Open Access Publications Tags : photocatalysis nanocomposites hydrogen peroxide photonic crystals plasmonic photocatalysis Index. décimale : 621.042 Energétique Résumé : Semiconductor photocatalysts have attracted a great amount of multidiscipline research due to their high potential for solar-to-chemical-energy conversion applications, ranging from water and air purification to hydrogen and chemical fuel production. This unique diversity of photoinduced applications has spurred major research efforts on the rational design and development of photocatalytic materials with tailored structural, morphological, and optoelectronic properties in order to promote solar-light harvesting, easy photogenerated electron-hole recombination and the concomitant low quantum efficiency. This book presents a collection of original research articles on advanced photocatalytic materials, synthesized by novel fabrication approaches and/or innovative modifications that improve their performance in target photocatalytic applications such as water (cyanobacterial toxins, antibiotics, phenols, and dyes) and air (NOx and volatile organic compounds) pollutant degradation, hydrogen evolution, and hydrogen peroxide production by photoelectrochemical cells. En ligne : https://doi.org/10.3390/books978-3-0365-1033-0 Advanced Photocatalytic Materials [document électronique] / Vlassios Likodimos, Auteur . - Basel (Switzerland) : MDPI, 2022 . - 165 p. : ill., couv. ill.
ISBN : 978-3-0365-1033-0
Langues : Anglais (eng)
Catégories : Open Access Publications Tags : photocatalysis nanocomposites hydrogen peroxide photonic crystals plasmonic photocatalysis Index. décimale : 621.042 Energétique Résumé : Semiconductor photocatalysts have attracted a great amount of multidiscipline research due to their high potential for solar-to-chemical-energy conversion applications, ranging from water and air purification to hydrogen and chemical fuel production. This unique diversity of photoinduced applications has spurred major research efforts on the rational design and development of photocatalytic materials with tailored structural, morphological, and optoelectronic properties in order to promote solar-light harvesting, easy photogenerated electron-hole recombination and the concomitant low quantum efficiency. This book presents a collection of original research articles on advanced photocatalytic materials, synthesized by novel fabrication approaches and/or innovative modifications that improve their performance in target photocatalytic applications such as water (cyanobacterial toxins, antibiotics, phenols, and dyes) and air (NOx and volatile organic compounds) pollutant degradation, hydrogen evolution, and hydrogen peroxide production by photoelectrochemical cells. En ligne : https://doi.org/10.3390/books978-3-0365-1033-0 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 9783036510330 621.042 LIK E-Book En Ligne Physique appliquée Disponible PermalinkPermalinkPermalinkPermalinkPermalinkPermalinkPermalinkPermalinkPermalinkPermalink


