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作 者:Yuhang Lu Shiyu Wang Pingan Zhu
机构地区:[1]Department of Mechanical Engineering,City University of Hong Kong,Hong Kong,China [2]Shenzhen Research Institute,City University of Hong Kong,Shenzhen,China
出 处:《Industrial Chemistry & Materials》2024年第3期441-450,共10页工业化学与材料(英文)
基 金:funded by the Research Grants Council of Hong Kong(21213621);National Natural Science Foundation of China(52303046);Shenzhen Science and Technology Program(JCYJ20220530140812028).
摘 要:With the trend towards miniaturization in soft robotics,most microactuators encounter challenges in achieving versatile deformations.Here,we present an innovative microactuator design featuring reciprocal deformation,activated solely by humidity changes.These microactuators adopt an asymmetric microfiber configuration,characterized by a core–shell structure with a hydrophilic shell encapsulating hydrophobic microparticles.Utilizing droplet microfluidics for fabrication enables precise control over microfiber morphology and internal microparticles.During hygroscopic actuation,these microactuators undergo a unique two-stage deformation,exhibiting opposite trends in curvature variation—a stark departure from the unidirectional deformations observed in previous microactuators.The anisotropy inherent in asymmetric microfibers governs water absorption and desorption,driving this distinctive reciprocal deformation.These microactuators demonstrate versatility in controlled droplet transport and solid cargo manipulation,expanding their potential applications.This study not only unveils novel mechanisms but also broadens the functional spectrum of microactuators.
关 键 词:Microactuators Reciprocal deformation Droplet microfluidics Asymmetric microfiber Liquid templates
分 类 号:TG1[金属学及工艺—金属学]
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