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Ordered honeycomb-like network of MnO2·nH2O nanocrystals formed on the surface of a Mn(OAc)2 solution drop upon interaction with O3 gas. / Tolstoy, Valeri P.; Vladimirova, Nadezhda I.; Gulina, Larisa B.

In: Mendeleev Communications , Vol. 29, No. 6, 2019, p. 713-715.

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@article{2448e3386963474b865697ab7db81189,
title = "Ordered honeycomb-like network of MnO2·nH2O nanocrystals formed on the surface of a Mn(OAc)2 solution drop upon interaction with O3 gas",
abstract = "Planar ordered honeycomb-like structures of the MnO2 layered birnessite-type crystalline form have for the first time been synthesized on the surface of Mn(OAc)2 solution drops upon interaction with O3 gas. The obtained network consists of 2D nanocrystals of the thickness up to 10 nm. The prepared material possesses a hierarchical structure and can be used in a fabrication of advanced sensor and electrode materials.",
author = "Tolstoy, {Valeri P.} and Vladimirova, {Nadezhda I.} and Gulina, {Larisa B.}",
year = "2019",
doi = "10.1016/j.mencom.2019.11.039",
language = "English",
volume = "29",
pages = "713--715",
journal = "Mendeleev Communications",
issn = "0959-9436",
publisher = "Elsevier",
number = "6",

}

RIS

TY - JOUR

T1 - Ordered honeycomb-like network of MnO2·nH2O nanocrystals formed on the surface of a Mn(OAc)2 solution drop upon interaction with O3 gas

AU - Tolstoy, Valeri P.

AU - Vladimirova, Nadezhda I.

AU - Gulina, Larisa B.

PY - 2019

Y1 - 2019

N2 - Planar ordered honeycomb-like structures of the MnO2 layered birnessite-type crystalline form have for the first time been synthesized on the surface of Mn(OAc)2 solution drops upon interaction with O3 gas. The obtained network consists of 2D nanocrystals of the thickness up to 10 nm. The prepared material possesses a hierarchical structure and can be used in a fabrication of advanced sensor and electrode materials.

AB - Planar ordered honeycomb-like structures of the MnO2 layered birnessite-type crystalline form have for the first time been synthesized on the surface of Mn(OAc)2 solution drops upon interaction with O3 gas. The obtained network consists of 2D nanocrystals of the thickness up to 10 nm. The prepared material possesses a hierarchical structure and can be used in a fabrication of advanced sensor and electrode materials.

UR - http://www.scopus.com/inward/record.url?scp=85075285206&partnerID=8YFLogxK

UR - http://www.mendeley.com/research/ordered-honeycomblike-network-mno2nh2o-nanocrystals-formed-surface-mnoac2-solution-drop-upon-interac

U2 - 10.1016/j.mencom.2019.11.039

DO - 10.1016/j.mencom.2019.11.039

M3 - Article

AN - SCOPUS:85075285206

VL - 29

SP - 713

EP - 715

JO - Mendeleev Communications

JF - Mendeleev Communications

SN - 0959-9436

IS - 6

ER -

ID: 50005942