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微米级结构的可控折叠。

Controlled folding of micrometer-size structures.

出版信息

Science. 1995 Jun 23;268(5218):1735-8. doi: 10.1126/science.268.5218.1735.

Abstract

Several types of microactuators have been fabricated, from simple paddles to self-assembling and -disassembling cubes. Conducting bilayers made of a layer of polymer and a layer of gold were used as hinges to connect rigid plates to each other and to a silicon substrate. The bending of the hinges was electrically controlled and reversible, allowing precise three-dimensional positioning of the plates. The structures were released from the substrate with a technique based on differential adhesion. This method, which avoids the use of a sacrificial layer and allows the actuators to pull themselves off the surface, may have general applications in micromachining. Possibilities include the manufacture, of surfaces whose light reflection or chemical properties can be switched.

摘要

已经制造出了几种微致动器,从简单的桨叶到自组装和自拆卸的立方体。使用由聚合物层和金层组成的导电双层作为铰链,将刚性板彼此连接并连接到硅衬底上。铰链的弯曲是电控制和可逆的,允许板的精确三维定位。使用基于差分粘附的技术从衬底上释放结构。这种方法避免了使用牺牲层并允许致动器从表面自行脱离,可能在微加工中有广泛的应用。可能性包括制造其光反射或化学性质可以切换的表面。

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