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Deformable devices with integrated functional nanomaterials for wearable electronics

机译:具有可穿戴电子设备集成功能纳米材料的可变形设备

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摘要

As the market and related industry for wearable electronics dramatically expands, there are continuous and strong demands for flexible and stretchable devices to be seamlessly integrated with soft and curvilinear human skin or clothes. However, the mechanical mismatch between the rigid conventional electronics and the soft human body causes many problems. Therefore, various prospective nanomaterials that possess a much lower flexural rigidity than their bulk counterparts have rapidly established themselves as promising electronic materials replacing rigid silicon and/or compound semiconductors in next-generation wearable devices. Many hybrid structures of multiple nanomaterials have been also developed to pursue both high performance and multifunctionality. Here, we provide an overview of state-of-the-art wearable devices based on one- or two-dimensional nanomaterials (e.g., carbon nanotubes, graphene, single-crystal silicon and oxide nanomembranes, organic nanomaterials and their hybrids) in combination with zero-dimensional functional nanomaterials (e.g., metal/oxide nanoparticles and quantum dots). Starting from an introduction of materials strategies, we describe device designs and the roles of individual ones in integrated systems. Detailed application examples of wearable sensors/actuators, memories, energy devices, and displays are also presented.
机译:随着可穿戴电子设备的市场和相关行业的迅速发展,对将柔性和可拉伸设备与柔软且弯曲的人体皮肤或衣服无缝集成的需求不断增长。然而,刚性的常规电子器件和柔软的人体之间的机械失配引起许多问题。因此,具有比其整体对应物低得多的挠曲刚度的各种预期的纳米材料已经迅速确立了自己的地位,成为在下一代可穿戴设备中替代刚性硅和/或化合物半导体的有前途的电子材料。还已经开发了多种纳米材料的许多杂化结构以追求高性能和多功能性。在这里,我们概述了基于一维或二维纳米材料(例如,碳纳米管,石墨烯,单晶硅和氧化物纳米膜,有机纳米材料及其混合物)的可穿戴设备的概述。零维功能纳米材料(例如,金属/氧化物纳米颗粒和量子点)。从介绍材料策略开始,我们描述了设备设计以及单个设备在集成系统中的作用。还介绍了可穿戴传感器/执行器,存储器,能源设备和显示器的详细应用示例。

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