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3차원 원자단층현미경을 활용한 기능성 재료의 구조-특성 관계 해석

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Understanding the Structure-Property Relationship in Functional Materials Using 3D Atom Probe Tomography

Chanwon Jung
J Electr Electron Mater 2024;37(5):476-485.
Published online: September 1, 2024
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Understanding the structure-property relationship in functional materials is crucial as microstructural features such as nano-precipitates, phase boundary, grain boundary segregation, and grain boundary phases play a key role in their functional properties. Atom probe tomography (APT) is an advanced analytical technique that allows for the three-dimensional (3D) mapping of atomic distributions and the precise determination of local chemical compositions in materials. Moreover, it offers sub-nanometer spatial resolution and chemical sensitivity at the tens of parts per million (ppm) level. Owing to its unique capabilities, this technique has been employed to uncover the 3D elemental distributions in a wide range of materials, including alloys, semiconductors, nanomaterials, and even biomaterials. In this paper, various kinds of examples are introduced for elucidating structure-property relationships on functional materials by utilizing the atom probe tomography.

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Understanding the Structure-Property Relationship in Functional Materials Using 3D Atom Probe Tomography
J Electr Electron Mater. 2024;37(5):476-485.   Published online September 1, 2024
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Understanding the Structure-Property Relationship in Functional Materials Using 3D Atom Probe Tomography
J Electr Electron Mater. 2024;37(5):476-485.   Published online September 1, 2024
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