Single-Step Synthesis of Platinoid-Decorated Phosphorene: Perspectives for Catalysis, Gas Sensing, and Energy Storage
Publication type: Journal Article
Publication date: 2020-10-27
scimago Q1
wos Q1
SJR: 1.921
CiteScore: 14.5
Impact factor: 8.2
ISSN: 19448244, 19448252
PubMed ID:
33108159
General Materials Science
Abstract
The originality of phosphorene is suppressed by its structural defects, irreproducibility, and sensitivity to the ambient environment. To preserve phosphorene's essential characteristics, for example, influencing the charge redistribution and generating the formation of active centers, noble-metal decoration is found to be an efficient approach. Herein, we demonstrate a single-step electrochemical synthesis of platinoid-decorated few-layer phosphorene (FP). The material's structure and effects of metal (Ru, Rh, and Pd) deposition on the FP nanosheets were first explored by numerous analytical techniques and theoretical calculations. Platinoid-decorated FPs demonstrate high quality and consist of one to five layers modified with round- and heptagon-shaped metal nanoparticles with the most intense distribution of Pd. The high-rate Rh deposition provides the enhanced electrocatalytic efficiency for hydrogen evolution (79 mV·dec-1-Tafel slope) and almost 20 times increased capacity for the Li-ion batteries in comparison to bare and Ru-decorated FP. The chemosensing of platinoid-decorated FP indicates a response to methanol plus ethanol and shows inertness to acetone. The incorporation of Ru and Rh nanoparticles increases FP's selectivity toward methanol. This research provides a new approach for the in situ FP functionalization during top-down synthesis and thus broadens the material's feasibility for advanced nanotechnology.
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Citations from 2025:
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Kovalska E. et al. Single-Step Synthesis of Platinoid-Decorated Phosphorene: Perspectives for Catalysis, Gas Sensing, and Energy Storage // ACS applied materials & interfaces. 2020. Vol. 12. No. 45. pp. 50516-50526.
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Kovalska E., Luxa J., Melle-Franco M., Wu B., Marek I., Roy P. K., Marvan P., Sofer Z. Single-Step Synthesis of Platinoid-Decorated Phosphorene: Perspectives for Catalysis, Gas Sensing, and Energy Storage // ACS applied materials & interfaces. 2020. Vol. 12. No. 45. pp. 50516-50526.
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TY - JOUR
DO - 10.1021/acsami.0c15525
UR - https://doi.org/10.1021/acsami.0c15525
TI - Single-Step Synthesis of Platinoid-Decorated Phosphorene: Perspectives for Catalysis, Gas Sensing, and Energy Storage
T2 - ACS applied materials & interfaces
AU - Kovalska, Evgeniya
AU - Luxa, Jan
AU - Melle-Franco, Manuel
AU - Wu, Bing
AU - Marek, Ivo
AU - Roy, Pradip Kumar
AU - Marvan, Petr
AU - Sofer, Zdeněk
PY - 2020
DA - 2020/10/27
PB - American Chemical Society (ACS)
SP - 50516-50526
IS - 45
VL - 12
PMID - 33108159
SN - 1944-8244
SN - 1944-8252
ER -
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BibTex (up to 50 authors)
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@article{2020_Kovalska,
author = {Evgeniya Kovalska and Jan Luxa and Manuel Melle-Franco and Bing Wu and Ivo Marek and Pradip Kumar Roy and Petr Marvan and Zdeněk Sofer},
title = {Single-Step Synthesis of Platinoid-Decorated Phosphorene: Perspectives for Catalysis, Gas Sensing, and Energy Storage},
journal = {ACS applied materials & interfaces},
year = {2020},
volume = {12},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/acsami.0c15525},
number = {45},
pages = {50516--50526},
doi = {10.1021/acsami.0c15525}
}
Cite this
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Kovalska, Evgeniya, et al. “Single-Step Synthesis of Platinoid-Decorated Phosphorene: Perspectives for Catalysis, Gas Sensing, and Energy Storage.” ACS applied materials & interfaces, vol. 12, no. 45, Oct. 2020, pp. 50516-50526. https://doi.org/10.1021/acsami.0c15525.