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MD5: 89ee0edf8431eaf07260768770f376fb
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Tabular Data - 3.8 KB - 13 Variables, 22 Observations - UNF:6:5fjh6HxkiKhfDVtyZBsh+A==
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Tabular Data - 3.2 KB - 5 Variables, 130 Observations - UNF:6:X6ELR3DZX6ay1Hkvhr350g==
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Tabular Data - 3.7 KB - 13 Variables, 22 Observations - UNF:6:H2EDB+G5jUlPeeRSwWI8ZA==
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Tabular Data - 364 B - 4 Variables, 17 Observations - UNF:6:kFFN5NBZGpgvDdwN9W4maw==
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Tabular Data - 2.2 KB - 6 Variables, 61 Observations - UNF:6:V8GfWQOYT0ZVkLyGEXBvYA==
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Tabular Data - 3.8 KB - 13 Variables, 22 Observations - UNF:6:ZNzMbhf0DU31ajQCca0Tqg==
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Apr 24, 2020 - Hu Hebing
Hu, Hebing, 2020, "Alignment of Silver Nanowires for Stretchable Electrodes", https://doi.org/10.21979/N9/MKUVTG, DR-NTU (Data), V1
Transparent conductors (TCs) for the next generation of soft electronic devices need to be highly stretchable, conductive and transparent; while inevitable challenge lies in enhancing them simultaneously. Cost effective silver nanowires (AgNWs) were widely used but the convention... |
Apr 24, 2020 -
Alignment of Silver Nanowires for Stretchable Electrodes
JPEG Image - 2.4 MB -
MD5: ec90995850a68dd9c0d983bcf75c3289
a) Schematic illustration of the Layer-by-Layer agitation-assisted alignment. The silver nanowire thin films show a crossed aligned nanostructure at the stretched state and a tangled oriented structure at the released state. b) SEM image of the monolayer assembled AgNWs. (Insert:... |
