2D MoTe2 nanosheets by atomic layer deposition: Excellent photo-electrocatalytic properties

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dc.contributor.author Zazpe, Raúl
dc.contributor.author Sopha, Hanna Ingrid
dc.contributor.author Charvot, Jaroslav
dc.contributor.author Krumpolec, Richard
dc.contributor.author Rodriguez Pereira, Jhonatan
dc.contributor.author Michalicka, Jan
dc.contributor.author Mistrík, Jan
dc.contributor.author Baca, Dominik
dc.contributor.author Motola, Martin
dc.contributor.author Bureš, Filip
dc.contributor.author Macák, Jan
dc.date.accessioned 2022-06-03T12:34:08Z
dc.date.available 2022-06-03T12:34:08Z
dc.date.issued 2021
dc.identifier.issn 2352-9407
dc.identifier.uri https://hdl.handle.net/10195/79371
dc.description.abstract Herein, the synthesis of MoTe2 nanosheets by means of Atomic Layer Deposition (ALD) is demonstrated for the first time. ALD enables tight control over the thickness and the composition of the deposited material, which are highly appealing features for the nanostructure fabrication. The growth of ALD MoTe2 was studied on substrates of different nature, including TiO2 nanotube (TNT) layers used as active supporting material for fabricating hierarchical nanotubular MoTe2/TNT heterostructure. The combination of newly synthesized Te precursor with commercial Mo precursor rendered the growth of 2D flaky MoTe2 nanosheets mostly out-of-plane oriented. The as-deposited MoTe2 was extensively characterized by different techniques which confirmed its chemical composition and revealed 2D flaky nano-crystalline structures. In parallel, MoTe2/TNT layers were employed to explore and exploit both photoand electrocatalytic properties. The synergy stemming from the out-of-plane MoTe2 nanosheet orientation, with an optimized amount of catalytic active edges, and the fast electron transfer through 1D TiO2 nanotubes triggered the catalytic properties for both, organic pollutant degradation and hydrogen evolution reaction (HER) applications. Remarkably, the application of a cathodic potential originated a gradual HER electrochemical activation over time driving to a higher current density and an overpotential drop. eng
dc.format p. 101017 eng
dc.language.iso eng
dc.publisher Elsevier Science BV eng
dc.relation.ispartof Applied Materials Today, volume 23, issue: June eng
dc.rights open access eng
dc.rights.uri https://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subject nanosheets eng
dc.subject Atomic Layer Deposition eng
dc.subject catalysis eng
dc.subject nanovrstvy cze
dc.subject ALD cze
dc.subject katalýza cze
dc.title 2D MoTe2 nanosheets by atomic layer deposition: Excellent photo-electrocatalytic properties eng
dc.title.alternative 2D MoTe2 nanovrstvy připravené depozicí atomárních vrstev: Vynikající foto-elektrokatalytické vlastnosti cze
dc.type article eng
dc.description.abstract-translated Je popsána příprava MoTe2 nanovrstev metodou depozice atomárních vrstev. Růst ALD MoTe2 byl studován na substrátech různých vlastností, včetně vrstev TiO2 nanotrubiček (TNT) používaných jako aktivní podpůrný materiál pro výrobu hierarchizované nanotrubkové heterostruktury MoTe2/TNT. Kombinace nově syntetizovaného prekurzoru Te s komerčním prekurzorem Mo poskytla růst 2D vločkovitých nanovrstev MoTe2 převážně orientovaných mimo rovinu. Takto připravený MoTe2 byl charakterizován různými technikami, které potvrdily jeho chemické složení a odhalily 2D vločkovité nanokrystalické struktury. cze
dc.peerreviewed yes eng
dc.publicationstatus published version eng
dc.identifier.doi 10.1016/j.apmt.2021.101017
dc.relation.publisherversion https://www.sciencedirect.com/science/article/pii/S2352940721000822
dc.identifier.wos 000667468400070
dc.identifier.scopus 2-s2.0-85103391291
dc.rights.license CC BY-NC-ND 4.0
dc.identifier.obd 39886427


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