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Layer-dependent stability of 2D mica nanosheets.


ABSTRACT: We report on the layer-dependent stability of muscovite-type two-dimensional (2D) mica nanosheets (KAl3Si3O10(OH)2). First-principles calculations on mica nanosheets with different layer thicknesses (n = 1, 2, and 3) reveal their layer-dependent stability; odd-numbered 2D mica nanosheets are more stable than even-numbered ones, and the preferable stability of odd-numbered layers originates from electronic effects. A core-shielding model is proposed with a reasonable assumption, successfully proving the instability of the even-numbered mica nanosheets. Raman imaging supports that the population of odd-numbered mica nanosheets is predominant in exfoliated mica products. The alternating charge states with odd/even layers were evidenced by Kelvin probe force microscopy. We also demonstrate a unique photocatalytic degradation, opening new doors for environmental applications of mica nanosheets.

SUBMITTER: Kim JH 

PROVIDER: S-EPMC10185575 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Layer-dependent stability of 2D mica nanosheets.

Kim Jae-Hun JH   Kulish Vadym V VV   Wu Shunnian S   Wu Ping P   Shi Yue Y   Osada Minoru M   Kim Hyoun Woo HW   Kim Sang Sub SS  

Scientific reports 20230515 1


We report on the layer-dependent stability of muscovite-type two-dimensional (2D) mica nanosheets (KAl<sub>3</sub>Si<sub>3</sub>O<sub>10</sub>(OH)<sub>2</sub>). First-principles calculations on mica nanosheets with different layer thicknesses (n = 1, 2, and 3) reveal their layer-dependent stability; odd-numbered 2D mica nanosheets are more stable than even-numbered ones, and the preferable stability of odd-numbered layers originates from electronic effects. A core-shielding model is proposed wit  ...[more]

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