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  1. H-2. ナノ生命科学研究所
  2. h-2 10.学術雑誌掲載論文
  3. 1. 査読済論文

Mechanism of atomic force microscopy imaging of three-dimensional hydration structures at a solid-liquid interface

https://doi.org/10.24517/00009386
https://doi.org/10.24517/00009386
4a3d3d18-9ec3-4038-830a-8b044e0bd24f
名前 / ファイル ライセンス アクション
TE-PR-FUKUMA-T-1155412.pdf TE-PR-FUKUMA-T-1155412.pdf (2.0 MB)
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Item type 学術雑誌論文 / Journal Article(1)
公開日 2017-10-03
タイトル
タイトル Mechanism of atomic force microscopy imaging of three-dimensional hydration structures at a solid-liquid interface
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
ID登録
ID登録 10.24517/00009386
ID登録タイプ JaLC
著者 Fukuma, Takeshi

× Fukuma, Takeshi

WEKO 366
e-Rad 90452094
金沢大学研究者情報 90452094
研究者番号 90452094

Fukuma, Takeshi

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Reischl, Bernhard

× Reischl, Bernhard

WEKO 13507

Reischl, Bernhard

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Kobayashi, Naritaka

× Kobayashi, Naritaka

WEKO 13508

Kobayashi, Naritaka

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Spijker, Peter

× Spijker, Peter

WEKO 13509

Spijker, Peter

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Canova, Fillippo Federici

× Canova, Fillippo Federici

WEKO 13510

Canova, Fillippo Federici

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Miyazawa, Keisuke

× Miyazawa, Keisuke

WEKO 13511

Miyazawa, Keisuke

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Foster, Adam S.

× Foster, Adam S.

WEKO 13512

Foster, Adam S.

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著者別表示 福間, 剛士

× 福間, 剛士

福間, 剛士

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提供者所属
内容記述タイプ Other
内容記述 金沢大学ナノ生命科学研究所
書誌情報 Physical Review B - Condensed Matter and Materials Physics

巻 92, 号 15, p. 1155412, 発行日 2015-10-09
ISSN
収録物識別子タイプ ISSN
収録物識別子 1098-0121
NCID
収録物識別子タイプ NCID
収録物識別子 AA11187113
DOI
関連タイプ isVersionOf
識別子タイプ DOI
関連識別子 10.1103/PhysRevB.92.155412
出版者
出版者 American Physical Society
抄録
内容記述タイプ Abstract
内容記述 Here we present both subnanometer imaging of three-dimensional (3D) hydration structures using atomic force microscopy (AFM) and molecular dynamics simulations of the calcite-water interface. In AFM, by scanning the 3D interfacial space in pure water and recording the force on the tip, a 3D force image can be produced, which can then be directly compared to the simulated 3D water density and forces on a model tip. Analyzing in depth the resemblance between experiment and simulation as a function of the tip-sample distance allowed us to clarify the contrast mechanism in the force images and the reason for their agreement with water density distributions. This work aims to form the theoretical basis for AFM imaging of hydration structures and enables its application to future studies on important interfacial processes at the molecular scale. © 2015 authors. Published by the American Physical Society. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI.
著者版フラグ
出版タイプ AM
出版タイプResource http://purl.org/coar/version/c_ab4af688f83e57aa
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