Formation mechanism of the (2 x 1) reconstruction of calcite (104)

Fuente: arXiv
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Main Authors: Zhou, Haojun, Chen, Yingquan, Ding, Mingyue, Zhong, Xiaoliang
Format: Preprint
Published: 2024
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_version_ 1866914920721809408
author Zhou, Haojun
Chen, Yingquan
Ding, Mingyue
Zhong, Xiaoliang
author_facet Zhou, Haojun
Chen, Yingquan
Ding, Mingyue
Zhong, Xiaoliang
contents Calcite has recently attracted extensive research interest in fields ranging from geoscience to carbon dioxide removal. Although much effort has been made to study the (2x1) reconstruction of the most stable (104) surface, the origin of this reconstruction remains unclear. Here, we carefully investigate the atomic and electronic structures of calcite (104) via density functional theory methods with van der Waals corrections. The results unambiguously show that the driving force for this reconstruction is the intrinsic demands of surface atoms to increase the coordination numbers. On reconstructing, calcite (104) forms four additional Ca-O bonds per (2x1) unit cell. Besides, phonon spectrums indicate both unreconstructed and reconstructed surfaces are dynamically stable. Finally, by applying the climbing image nudged elastic band method, an energy barrier is predicted during the reconstructing. This work delivers a full picture for the formation of calcite (104)-(2x1) reconstruction and can greatly advance the understanding of surface science for calcite.
format Preprint
id arxiv_https___arxiv_org_abs_2408_12222
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Formation mechanism of the (2 x 1) reconstruction of calcite (104)
Zhou, Haojun
Chen, Yingquan
Ding, Mingyue
Zhong, Xiaoliang
Materials Science
Calcite has recently attracted extensive research interest in fields ranging from geoscience to carbon dioxide removal. Although much effort has been made to study the (2x1) reconstruction of the most stable (104) surface, the origin of this reconstruction remains unclear. Here, we carefully investigate the atomic and electronic structures of calcite (104) via density functional theory methods with van der Waals corrections. The results unambiguously show that the driving force for this reconstruction is the intrinsic demands of surface atoms to increase the coordination numbers. On reconstructing, calcite (104) forms four additional Ca-O bonds per (2x1) unit cell. Besides, phonon spectrums indicate both unreconstructed and reconstructed surfaces are dynamically stable. Finally, by applying the climbing image nudged elastic band method, an energy barrier is predicted during the reconstructing. This work delivers a full picture for the formation of calcite (104)-(2x1) reconstruction and can greatly advance the understanding of surface science for calcite.
title Formation mechanism of the (2 x 1) reconstruction of calcite (104)
topic Materials Science
url https://arxiv.org/abs/2408.12222