000 01605nam a2200121Ia 4500
008 220615s9999||||xx |||||||||||||| ||und||
100 _aCappelletti, Giuseppe||Bianchi, Claudia
245 0 _aSynthesis and Applications of Nanomaterials for Photocatalysis and Electrocatalysis
546 _aEnglish[eng]
650 _apharmaceutical||photodegradation||photocatalytic selective oxidation||magnetron sputtering||solid-state synthesis||degradation||visible light||nanocomposites||hydrogen production||oxygen vacancies||noble metal nanoparticles||photodeposition||Cr(VI)||CaIn2S4/ZnIn2S4 composites||core-shell structures||impregnation pH||active facets||tantalum oxynitride||oxygen vacancy||Ga2O3||mineralization||water oxidation||TiO2||g-C3N4||black TiO2||ascorbic acid||photoelectrochemistry||Bi4Ti3O12 nanosheets||Alizarin Red S||hydrogen titanate||surface modification||Zn2SnO4/BiOBr||organic pollutant||structure-property relationships||solid-state chemical reduction||simulated sunlight||localized surface plasmon resonance||benzylic alcohols||mesoporous Nb2O5||active site hydrophilicity||photocatalysis||photocatalytic degradation||oxygen reduction reaction||rutile||cobalt phosphate||Ti–C bonds||porous||visible light photocatalysis||active species||surface hydroxyl groups||interfacial charge transfer||Pt-free catalysts||micrometric TiO2||Mn decoration||organic pollutants||CNT N-doped carbons||band gap energy||heterogeneous photocatalysis||photocatalytic performance||photocatalytic hydrogen evolution||hydrothermal method
856 _uhttps://mdpi.com/books/pdfview/book/2258
942 _cEB
999 _c8933
_d8933