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Main Authors: Kawakami, Tappei, Nakayama, Kosuke, Sugawara, Katsuaki, Sato, Takafumi
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2407.02114
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author Kawakami, Tappei
Nakayama, Kosuke
Sugawara, Katsuaki
Sato, Takafumi
author_facet Kawakami, Tappei
Nakayama, Kosuke
Sugawara, Katsuaki
Sato, Takafumi
contents Topotactic chemical reaction (TCR) is a chemical process that transforms one crystalline phase to another while maintaining one or more of the original structural frameworks, typically induced by the local insertion, removal, or replacement of atoms in a crystal. The utilization of TCR in atomic-layer materials and surfaces of bulk crystals leads to exotic quantum phases, as highlighted by the control of topological phases, the emergence of two-dimensional (2D) superconductivity, and the realization of 2D ferromagnetism. Advanced surface-sensitive spectroscopies such as angle-resolved photoemission spectroscopy (ARPES) and scanning tunneling microscopy (STM) are leading techniques to visualize the electronic structure of such exotic states and provide us a guide to further functionalize material properties. In this review article, we summarize the recent progress in this field, with particular emphasis on intriguing results obtained by combining spectroscopies and TCR in thin films.
format Preprint
id arxiv_https___arxiv_org_abs_2407_02114
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle In-situ topotactic chemical reaction for spectroscopies
Kawakami, Tappei
Nakayama, Kosuke
Sugawara, Katsuaki
Sato, Takafumi
Materials Science
Mesoscale and Nanoscale Physics
Superconductivity
Topotactic chemical reaction (TCR) is a chemical process that transforms one crystalline phase to another while maintaining one or more of the original structural frameworks, typically induced by the local insertion, removal, or replacement of atoms in a crystal. The utilization of TCR in atomic-layer materials and surfaces of bulk crystals leads to exotic quantum phases, as highlighted by the control of topological phases, the emergence of two-dimensional (2D) superconductivity, and the realization of 2D ferromagnetism. Advanced surface-sensitive spectroscopies such as angle-resolved photoemission spectroscopy (ARPES) and scanning tunneling microscopy (STM) are leading techniques to visualize the electronic structure of such exotic states and provide us a guide to further functionalize material properties. In this review article, we summarize the recent progress in this field, with particular emphasis on intriguing results obtained by combining spectroscopies and TCR in thin films.
title In-situ topotactic chemical reaction for spectroscopies
topic Materials Science
Mesoscale and Nanoscale Physics
Superconductivity
url https://arxiv.org/abs/2407.02114