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| Autore: |
Cappelletti Giuseppe
|
| Titolo: |
Synthesis and Applications of Nanomaterials for Photocatalysis and Electrocatalysis
|
| Pubblicazione: | MDPI - Multidisciplinary Digital Publishing Institute, 2020 |
| Descrizione fisica: | 1 online resource (213 p.) |
| Soggetto non controllato: | active facets |
| active site hydrophilicity | |
| active species | |
| Alizarin Red S | |
| ascorbic acid | |
| band gap energy | |
| benzylic alcohols | |
| Bi4Ti3O12 nanosheets | |
| black TiO2 | |
| CaIn2S4/ZnIn2S4 composites | |
| CNT N-doped carbons | |
| cobalt phosphate | |
| core-shell structures | |
| Cr(VI) | |
| degradation | |
| g-C3N4 | |
| Ga2O3 | |
| heterogeneous photocatalysis | |
| hydrogen production | |
| hydrogen titanate | |
| hydrothermal method | |
| impregnation pH | |
| interfacial charge transfer | |
| localized surface plasmon resonance | |
| magnetron sputtering | |
| mesoporous Nb2O5 | |
| micrometric TiO2 | |
| mineralization | |
| Mn decoration | |
| nanocomposites | |
| noble metal nanoparticles | |
| organic pollutant | |
| organic pollutants | |
| oxygen reduction reaction | |
| oxygen vacancies | |
| oxygen vacancy | |
| pharmaceutical | |
| photocatalysis | |
| photocatalytic degradation | |
| photocatalytic hydrogen evolution | |
| photocatalytic performance | |
| photocatalytic selective oxidation | |
| photodegradation | |
| photodeposition | |
| photoelectrochemistry | |
| porous | |
| Pt-free catalysts | |
| rutile | |
| simulated sunlight | |
| solid-state chemical reduction | |
| solid-state synthesis | |
| structure-property relationships | |
| surface hydroxyl groups | |
| surface modification | |
| tantalum oxynitride | |
| Ti-C bonds | |
| TiO2 | |
| visible light | |
| visible light photocatalysis | |
| water oxidation | |
| Zn2SnO4/BiOBr | |
| Persona (resp. second.): | BianchiClaudia |
| Sommario/riassunto: | Heterogeneous catalysis, exploiting photo- and electrochemical reactions, has expanded rapidly in recent decades, having undergone various developments, especially from both energetic and environmental points of view. Photocatalysis plays a pivotal role in such applications as water splitting and air/water remediation. Electrocatalysis can be found in a large array of research fields, including the development of electroanalytical sensors, wastewater treatment, and energy conversion devices (e.g., batteries, fuel and solar cells, etc.). Therefore, the fine control of the synthetic procedures, together with extensive physicochemical characterisations of the tailor-made catalytic nanomaterials, are of fundamental importance to achieving the desired results. The present book will include recent enhancements in oxide/metal nanoparticles for photocatalytic and electrocatalytic applications, especially in the fields of pollutants abatement and energy conversion. |
| Titolo autorizzato: | Synthesis and Applications of Nanomaterials for Photocatalysis and Electrocatalysis ![]() |
| ISBN: | 3-03928-832-6 |
| Formato: | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione: | Inglese |
| Record Nr.: | 9910404084103321 |
| Lo trovi qui: | Univ. Federico II |
| Opac: | Controlla la disponibilità qui |