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Tabular Data - 253 B - 2 Variables, 8 Observations - UNF:6:M6TSfBsIt5+wuKhypT/jlA==
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Nov 30, 2022 - Zhou Yang
Zhou, Yang; Wan, Changjin; Yang, Yongsheng; Yang, Hui; Wang, Shancheng; Dai, Zhendong; Ji, Keju; Jiang, Hui; Chen, XIaodong; Long, Yi, 2022, "Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics", https://doi.org/10.21979/N9/LXEDL9, DR-NTU (Data), V1
High conductivity, large mechanical strength, and elongation are important parameters for soft electronic applications. However, it is difficult to find a material with balanced electronic and mechanical performance. Here, a simple method is developed to introduce ion-rich pores... |
Nov 30, 2022 -
Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics
TIFF Image - 2.4 MB -
MD5: aa8918aac4daa8427f2795c823f369bf
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Nov 30, 2022 -
Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics
TIFF Image - 842.7 KB -
MD5: 77ebb3148fbe5fdc7c9fb76ef980378e
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Nov 30, 2022 -
Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics
TIFF Image - 844.6 KB -
MD5: 61b77d722ed9999ddfacf09ebc86924b
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Nov 30, 2022 -
Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics
Fixed Field Text Data - 1.7 KB -
MD5: a9dff86b5d4816cf58860bc174f15d04
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Nov 30, 2022 -
Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics
Fixed Field Text Data - 1.7 KB -
MD5: 1a643474b1e783e1e9480de0e37214c7
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