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Pregled bibliografske jedinice broj: 1192184

Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications


Nundy, Srijita; Tatar, Dalibor; Kojčinović, Jelena; Ullah, Habib; Ghosh, Aritra; Mallick, Tapas K.; Meinusch, Rafael; Smarsly, Bernd M.; Tahir, Asif Ali; Djerdj, Igor
Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications // Advanced Sustainable Systems, 6 (2022), 7; 2200067, 20 doi:10.1002/adsu.202200067 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1192184 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications

Autori
Nundy, Srijita ; Tatar, Dalibor ; Kojčinović, Jelena ; Ullah, Habib ; Ghosh, Aritra ; Mallick, Tapas K. ; Meinusch, Rafael ; Smarsly, Bernd M. ; Tahir, Asif Ali ; Djerdj, Igor

Izvornik
Advanced Sustainable Systems (2366-7486) 6 (2022), 7; 2200067, 20

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
high-entropy-oxides ; photocatalyst ; dye-degradation ; single-phase ; photoelectrochemical-water-splitting ; hydrogen-evolution

Sažetak
Five different rare-earth-based nanocrystalline high entropy oxides (HEOs) with fluorite type of structure and average crystallite sizes between 6 and 8 nm were prepared and their photocatalytic behaviour towards AZO dye degradation and photoelectrochemical water splitting for hydrogen generation was examined. The cationic site in the fluorite lattice consists of five equimolar elements selected from the group of rare-earth elements including La, Ce, Pr, Eu, and Gd, and second-row transition metals, Y and Zr. Studied HEOs exhibit bandgaps in the range from 1.91 eV to 3.0 eV and appropriate valence and conduction bands for water splitting. They reveal high photocatalytic activity that is mostly attributed to the accessibility of more photocatalytic active sites which provided radicals responsible for the AZO dye degradation. The materials successfully produce hydrogen by photocatalytic water splitting, suggesting the potential of HEOs as new photocatalysts. The photocatalytic performances of all studied HEOs outperform the single fluorite oxides or equivalent mixed oxides. The Ce0.2Zr0.2La0.2Pr0.2Y0.2O2 (CZLPY) engender hydrogen in 9.2 µmolmg–1 per hour which is much higher content than for pristine CeO2 material which amounts to 0.8 µmolmg–1 per hour.

Izvorni jezik
Engleski

Znanstvena područja
Fizika, Kemija



POVEZANOST RADA


Projekti:
HRZZ-PZS-2019-02-2467 - Istraživanje utjecaja metalnih promotora rijetkih zemalja i stupnja uređenja na redoks svojstva sustava CeO2 - ZrO2 (SREMPOREPROCEZIS) (Đerđ, Igor, HRZZ - 2019-02) ( CroRIS)

Ustanove:
Sveučilište u Osijeku - Odjel za kemiju

Profili:

Avatar Url Jelena Kojčinović (autor)

Avatar Url Dalibor Tatar (autor)

Avatar Url Igor Đerđ (autor)

Poveznice na cjeloviti tekst rada:

doi onlinelibrary.wiley.com

Citiraj ovu publikaciju:

Nundy, Srijita; Tatar, Dalibor; Kojčinović, Jelena; Ullah, Habib; Ghosh, Aritra; Mallick, Tapas K.; Meinusch, Rafael; Smarsly, Bernd M.; Tahir, Asif Ali; Djerdj, Igor
Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications // Advanced Sustainable Systems, 6 (2022), 7; 2200067, 20 doi:10.1002/adsu.202200067 (međunarodna recenzija, članak, znanstveni)
Nundy, S., Tatar, D., Kojčinović, J., Ullah, H., Ghosh, A., Mallick, T., Meinusch, R., Smarsly, B., Tahir, A. & Djerdj, I. (2022) Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications. Advanced Sustainable Systems, 6 (7), 2200067, 20 doi:10.1002/adsu.202200067.
@article{article, author = {Nundy, Srijita and Tatar, Dalibor and Koj\v{c}inovi\'{c}, Jelena and Ullah, Habib and Ghosh, Aritra and Mallick, Tapas K. and Meinusch, Rafael and Smarsly, Bernd M. and Tahir, Asif Ali and Djerdj, Igor}, year = {2022}, pages = {20}, DOI = {10.1002/adsu.202200067}, chapter = {2200067}, keywords = {high-entropy-oxides, photocatalyst, dye-degradation, single-phase, photoelectrochemical-water-splitting, hydrogen-evolution}, journal = {Advanced Sustainable Systems}, doi = {10.1002/adsu.202200067}, volume = {6}, number = {7}, issn = {2366-7486}, title = {Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications}, keyword = {high-entropy-oxides, photocatalyst, dye-degradation, single-phase, photoelectrochemical-water-splitting, hydrogen-evolution}, chapternumber = {2200067} }
@article{article, author = {Nundy, Srijita and Tatar, Dalibor and Koj\v{c}inovi\'{c}, Jelena and Ullah, Habib and Ghosh, Aritra and Mallick, Tapas K. and Meinusch, Rafael and Smarsly, Bernd M. and Tahir, Asif Ali and Djerdj, Igor}, year = {2022}, pages = {20}, DOI = {10.1002/adsu.202200067}, chapter = {2200067}, keywords = {high-entropy-oxides, photocatalyst, dye-degradation, single-phase, photoelectrochemical-water-splitting, hydrogen-evolution}, journal = {Advanced Sustainable Systems}, doi = {10.1002/adsu.202200067}, volume = {6}, number = {7}, issn = {2366-7486}, title = {Bandgap Engineering in Novel Fluorite‐Type Rare Earth High‐Entropy Oxides (RE‐HEOs) with Computational and Experimental Validation for Photocatalytic Water Splitting Applications}, keyword = {high-entropy-oxides, photocatalyst, dye-degradation, single-phase, photoelectrochemical-water-splitting, hydrogen-evolution}, chapternumber = {2200067} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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