2015
DOI: 10.1002/adfm.201503922
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Directed Motility of Hygroresponsive Biomimetic Actuators

Abstract: The capability of cellulose microfibrils to elicit directionality by anisotropically restricting the deformation of amorphous biogenic matrices is central to the motility of many plants as motoric and shape‐restoring elements. Herein, an approach is described to control directionality of artificial composite actuators that mimic the hygroinduced motion of composite plant tissues such as the opening of seed pods, winding of plant tendrils, and burial of seed awns. The actuators are designed as bilayer structure… Show more

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Cited by 115 publications
(96 citation statements)
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“…(C)湿度驱动转化为电能装置示意图. AG/LGF@AG 条带为湿度触发 驱动器, 与 PVDF 组成的压电材料链接在一起, 将化学能转化为电 能 [53] . (D)水蒸发驱动摆动式发动机, 将其与电磁发电机链接, 产生的 电能让 LEDs 灯亮 [93] Figure 6 Design and performance of a humidity-gradient-driven generator.…”
Section: (B)湿空气靠近驱动unclassified
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“…(C)湿度驱动转化为电能装置示意图. AG/LGF@AG 条带为湿度触发 驱动器, 与 PVDF 组成的压电材料链接在一起, 将化学能转化为电 能 [53] . (D)水蒸发驱动摆动式发动机, 将其与电磁发电机链接, 产生的 电能让 LEDs 灯亮 [93] Figure 6 Design and performance of a humidity-gradient-driven generator.…”
Section: (B)湿空气靠近驱动unclassified
“…[102] . (C)加固型玻璃纤维在 垂直、倾斜排列时湿度响应型驱动器的弯曲情况 [53] Figure 11 (A) Schematic diagrams of different designed G/GO fibers and their reversible deformations with changes in humidity [61] . (B) Ribbon with the molecular director at a 45° angle with respect to the long axis of the film, and the resulting curling behavior after activation in KOH solution [102] .…”
Section: (B)可形状转变的水mentioning
confidence: 99%
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