Abstract
Microassembly based on origami, the Japanese art of paper folding, presents an attractive methodology for constructing complex three-dimensional (3D) devices and advanced materials. A variety of functional structures have been created using patterned metallic, semiconducting, and polymeric thin films, but have been limited to those that curve in a single direction. We report a design framework that can be used to achieve spontaneous bidirectional folds with any desired angle, and we demonstrate theoretical and experimental realizations of complex 3D structures with +90°, -90°, +180°, and -180° folds. The strategy is parallel, versatile, and compatible with conventional microfabrication. © 2009 American Institute of Physics.
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CITATION STYLE
Bassik, N., Stern, G. M., & Gracias, D. H. (2009). Microassembly based on hands free origami with bidirectional curvature. Applied Physics Letters, 95(9). https://doi.org/10.1063/1.3212896
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