School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, Arizona 85287, USA.
School of Earth and Space Exploration, School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, Arizona 85287, USA.
Nat Commun. 2014;5:3140. doi: 10.1038/ncomms4140.
There are significant challenges in developing deformable devices at the system level that contain integrated, deformable energy storage devices. Here we demonstrate an origami lithium-ion battery that can be deformed at an unprecedented high level, including folding, bending and twisting. Deformability at the system level is enabled using rigid origami, which prescribes a crease pattern such that the materials making the origami pattern do not experience large strain. The origami battery is fabricated through slurry coating of electrodes onto paper current collectors and packaging in standard materials, followed by folding using the Miura pattern. The resulting origami battery achieves significant linear and areal deformability, large twistability and bendability. The strategy described here represents the fusion of the art of origami, materials science and functional energy storage devices, and could provide a paradigm shift for architecture and design of flexible and curvilinear electronics with exceptional mechanical characteristics and functionalities.
在系统层面上开发包含集成、可变形储能器件的可变形设备存在重大挑战。在这里,我们展示了一种折纸锂离子电池,它可以以前所未有的高水平进行变形,包括折叠、弯曲和扭曲。通过使用刚性折纸来实现系统级的可变形性,刚性折纸规定了一种折痕模式,使得制作折纸图案的材料不会经历大的应变。折纸电池通过将电极浆料涂覆到纸张集电器上并使用标准材料进行封装,然后使用三原折纸图案进行折叠来制造。由此产生的折纸电池实现了显著的线性和面积可变形性、大的扭转性和弯曲性。这里描述的策略代表了折纸艺术、材料科学和功能储能器件的融合,它可能为具有出色机械特性和功能的灵活和曲线形电子产品的架构和设计带来范式转变。