2016
DOI: 10.1002/admi.201600169
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Highly Efficient Actuator of Graphene/Polydopamine Uniform Composite Thin Film Driven by Moisture Gradients

Abstract: upon a change in relative humidity of the surrounding air. [ 13 ] Sun et al. have demonstrated the fabrication of an energetic walking device driven by a powerful humidity responsive bilayer actuator comprising an action layer of cross-linked poly(allylamine hydrochloride)/poly(acrylic acid) (PAH/PAA) fi lms and a supporting layer of UV-cured Norland Optical Adhesive (NOA)-63. [ 8 ] Considering that graphene has many extraordinary characteristics, such as high thermal conductivity and excellent mechanical prop… Show more

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Cited by 65 publications
(66 citation statements)
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References 30 publications
(42 reference statements)
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“…The mechanism of humidity actuation is attributed to the in‐and‐out migration of water molecules. In pioneering works, many efforts have been made to fabricate humidity‐responsive actuators based on various materials, including cellulose nanofiber, PPy, graphene, polydopamine, and so on. Recently, Arazoe et al .…”
Section: Actuation Mechanismsmentioning
confidence: 99%
“…The mechanism of humidity actuation is attributed to the in‐and‐out migration of water molecules. In pioneering works, many efforts have been made to fabricate humidity‐responsive actuators based on various materials, including cellulose nanofiber, PPy, graphene, polydopamine, and so on. Recently, Arazoe et al .…”
Section: Actuation Mechanismsmentioning
confidence: 99%
“…(A) Schematic illustration of the mechanical locomotion mechanism of the uniform RGO-PDA thin film actuator. Upon the trigger by moisture from bottom side, hydrophilic PDA inside the bottom layer of RGO-PDA uniform thin film absorbed water to expand due to the formation a stronger intermolecular hydrogen bonds interaction between water molecular and PDA [32] . (B) Solvent-sensitive PC actuators.…”
Section: 溶剂型智能驱动材料的概念及基本性能mentioning
confidence: 99%
“…Polymer matrix composites (PMCs) are the materials consisting of polymer matrix combined with reinforcing dispersed phases, such as nano‐ or micro‐particles, fibers, and other nanomaterials, etc., which are designed to transfer loads between reinforcing dispersed phases through the matrix. Some of the advantages of PMCs include good stiffness, toughness, and strength .…”
Section: Introductionmentioning
confidence: 99%