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Pregled bibliografske jedinice broj: 1095048

In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry


Šarić, Iva; Kolympadi Markovic, Maria; Peter, Robert; Linić, Petra; Wittine, Karlo; Kavre Piltaver, Ivna; Jelovica Badovinac, Ivana; Marković, Dean; Knez, Mato; Ambrožić, Gabriela
In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry // Applied Surface Science, 539 (2021), 148254, 10 doi:10.1016/j.apsusc.2020.148254 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1095048 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry

Autori
Šarić, Iva ; Kolympadi Markovic, Maria ; Peter, Robert ; Linić, Petra ; Wittine, Karlo ; Kavre Piltaver, Ivna ; Jelovica Badovinac, Ivana ; Marković, Dean ; Knez, Mato ; Ambrožić, Gabriela

Izvornik
Applied Surface Science (0169-4332) 539 (2021); 148254, 10

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

Ključne riječi
Azide-alkyne click chemistry ; Atomic layer deposition ; Molecular layer deposition ; Zirconia nanoparticles ; ATR-FTIR ; XPS

Sažetak
We report on multi-step copper-free vapor phase azide-alkyne click reactions for the functionalization of metal oxide nanopowders, automated with the atomic layer deposition (ALD) technique. The synthetic approach consists of the following reaction steps: chemisorption of propiolic acid (PA) to ZrO2 from the gas phase, followed by the formation of a triazole ring through a click reaction with 1, 4-bis(azidomethyl)benzene (BisA), and, in the final step, click-coupling of the pendant azide groups with a second dose of propiolic acid (PA). The chemical composition and nature of the chemical bonding in the samples obtained after each of the ALD processing steps were investigated in detail by ATR-FTIR and XPS. As confirmed by an additional ALD deposition of ZnO, the latter reaction step introduces free polar carboxylic acid functionalities to the nanomaterial surface, which enhance the stability of the chemically modified zirconia in ethanolic dispersion. This proof-of-concept study offers great potential toward the fabrication of functional organic layers on metal oxide surfaces by sequential azide-alkyne cycloadditions performed in ALD.

Izvorni jezik
Engleski

Znanstvena područja
Kemija, Interdisciplinarne prirodne znanosti



POVEZANOST RADA


Projekti:
IP-2016-06-3568 - Preparation of Porous Thin-film Materials for water Purification using Atomic Layer Deposition (ALD) (WATPUR) (Ambrožić, Gabriela, HRZZ - 2016-06) ( CroRIS)

Ustanove:
Sveučilište u Rijeci - Odjel za fiziku

Poveznice na cjeloviti tekst rada:

doi www.sciencedirect.com

Citiraj ovu publikaciju:

Šarić, Iva; Kolympadi Markovic, Maria; Peter, Robert; Linić, Petra; Wittine, Karlo; Kavre Piltaver, Ivna; Jelovica Badovinac, Ivana; Marković, Dean; Knez, Mato; Ambrožić, Gabriela
In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry // Applied Surface Science, 539 (2021), 148254, 10 doi:10.1016/j.apsusc.2020.148254 (međunarodna recenzija, članak, znanstveni)
Šarić, I., Kolympadi Markovic, M., Peter, R., Linić, P., Wittine, K., Kavre Piltaver, I., Jelovica Badovinac, I., Marković, D., Knez, M. & Ambrožić, G. (2021) In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry. Applied Surface Science, 539, 148254, 10 doi:10.1016/j.apsusc.2020.148254.
@article{article, author = {\v{S}ari\'{c}, Iva and Kolympadi Markovic, Maria and Peter, Robert and Lini\'{c}, Petra and Wittine, Karlo and Kavre Piltaver, Ivna and Jelovica Badovinac, Ivana and Markovi\'{c}, Dean and Knez, Mato and Ambro\v{z}i\'{c}, Gabriela}, year = {2021}, pages = {10}, DOI = {10.1016/j.apsusc.2020.148254}, chapter = {148254}, keywords = {Azide-alkyne click chemistry, Atomic layer deposition, Molecular layer deposition, Zirconia nanoparticles, ATR-FTIR, XPS}, journal = {Applied Surface Science}, doi = {10.1016/j.apsusc.2020.148254}, volume = {539}, issn = {0169-4332}, title = {In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry}, keyword = {Azide-alkyne click chemistry, Atomic layer deposition, Molecular layer deposition, Zirconia nanoparticles, ATR-FTIR, XPS}, chapternumber = {148254} }
@article{article, author = {\v{S}ari\'{c}, Iva and Kolympadi Markovic, Maria and Peter, Robert and Lini\'{c}, Petra and Wittine, Karlo and Kavre Piltaver, Ivna and Jelovica Badovinac, Ivana and Markovi\'{c}, Dean and Knez, Mato and Ambro\v{z}i\'{c}, Gabriela}, year = {2021}, pages = {10}, DOI = {10.1016/j.apsusc.2020.148254}, chapter = {148254}, keywords = {Azide-alkyne click chemistry, Atomic layer deposition, Molecular layer deposition, Zirconia nanoparticles, ATR-FTIR, XPS}, journal = {Applied Surface Science}, doi = {10.1016/j.apsusc.2020.148254}, volume = {539}, issn = {0169-4332}, title = {In-situ multi-step pulsed vapor phase surface functionalization of zirconia nanoparticles via copper-free click chemistry}, keyword = {Azide-alkyne click chemistry, Atomic layer deposition, Molecular layer deposition, Zirconia nanoparticles, ATR-FTIR, XPS}, chapternumber = {148254} }

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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