High‐Operating‐Temperature Direct Ink Writing of Mesoscale Eutectic Architectures

High‐operating‐temperature direct ink writing (HOT‐DIW) of mesoscale architectures that are composed of eutectic silver chloride–potassium chloride. The molten ink undergoes directional solidification upon printing on a cold substrate. The lamellar spacing of the printed features can be varied betwe...

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Veröffentlicht in:Advanced materials (Weinheim) 2017-02, Vol.29 (7), p.np-n/a
Hauptverfasser: Boley, J. William, Chaudhary, Kundan, Ober, Thomas J., Khorasaninejad, Mohammadreza, Chen, Wei Ting, Hanson, Erik, Kulkarni, Ashish, Oh, Jaewon, Kim, Jinwoo, Aagesen, Larry K., Zhu, Alexander Y., Capasso, Federico, Thornton, Katsuyo, Braun, Paul V., Lewis, Jennifer A.
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container_issue 7
container_start_page np
container_title Advanced materials (Weinheim)
container_volume 29
creator Boley, J. William
Chaudhary, Kundan
Ober, Thomas J.
Khorasaninejad, Mohammadreza
Chen, Wei Ting
Hanson, Erik
Kulkarni, Ashish
Oh, Jaewon
Kim, Jinwoo
Aagesen, Larry K.
Zhu, Alexander Y.
Capasso, Federico
Thornton, Katsuyo
Braun, Paul V.
Lewis, Jennifer A.
description High‐operating‐temperature direct ink writing (HOT‐DIW) of mesoscale architectures that are composed of eutectic silver chloride–potassium chloride. The molten ink undergoes directional solidification upon printing on a cold substrate. The lamellar spacing of the printed features can be varied between approximately 100 nm and 2 µm, enabling the manipulation of light in the visible and infrared range.
doi_str_mv 10.1002/adma.201604778
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source Wiley Online Library Journals Frontfile Complete
subjects 3D printing
Architecture
Chlorides
Directional solidification
Eutectic composition
Eutectic temperature
Eutectics
Infrared
Materials science
Mesoscale phenomena
metamaterials
Potassium
Printing
self‐assembly
structural color
title High‐Operating‐Temperature Direct Ink Writing of Mesoscale Eutectic Architectures
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