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Nanomaterials in Skin-Inspired Electronics: Toward Soft and Robust Skin-like Electronic Nanosystems

机译:皮肤启发电子产品中的纳米材料:朝柔软且坚固的皮肤状电子纳米系统

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摘要

Skin-inspired wearable electronic/biomedical systems based on functional nanomaterials with exceptional electrical and mechanical properties have revolutionized wearable applications, such as portable Internet of Things, personalized healthcare monitors, human-machine interfaces, and even always-connected precise medicine systems. Despite these advancements, including the ability to predict and to control nanolevel phenomena of functional nanomaterials precisely and strategies for integrating nanomaterials onto desired substrates without performance losses, skin-inspired electronic nanosystems are not yet feasible beyond proof-of-concept devices. In this Perspective, we provide an outlook on skin-like electronics through the review of several recent reports on various materials strategies and integration methodologies of stretchable conducting and semiconducting nanomaterials, which are used as electrodes and active layers in stretchable sensors, transistors, multiplexed arrays, and integrated circuits. To overcome the challenge of realizing robust electronic nanosystems, we discuss using nanomaterials in dynamically cross-linked polymer matrices, focusing on the latest innovations in stretchable self-healing electronics, which could change the paradigm of wearable electronics.
机译:基于功能纳米材料的皮肤启发性可穿戴电子/生物医学系统具有卓越的电气和机械性能,具有彻底改变的可穿戴应用,例如便携式内容,个性化的医疗保健监视器,人机界面,甚至连体连接的精确药系统。尽管有这些进步,包括预测和控制功能性纳米材料的纳米材料现象的能力精确地和将纳米材料集成到所需基材上而没有性能损失的策略,皮肤启发的电子纳米系统尚不可行,而不是超越概念验证装置。在这种观点中,我们通过审查有关可拉伸导电和半导体纳米材料的各种材料策略和集成方法的几个报告来提供皮肤样电子产品的展望,这些报告用作可拉伸传感器中的电极和有源层,晶体管,多路复用阵列和集成电路。为了克服实现强大的电子纳米系统的挑战,我们在动态交联聚合物矩阵中使用纳米材料讨论,专注于可伸展的自愈电子设备中的最新创新,这可能会改变可穿戴电子产品的范式。

著录项

  • 来源
    《ACS nano》 |2018年第12期|共9页
  • 作者

    Son Donghee; Bao Zhenan;

  • 作者单位

    Korea Inst Sci &

    Technol Biomed Res Inst 5 Hwarang Ro 14 Gil Seoul 02791 South Korea;

    Stanford Univ Dept Chem Engn Stanford CA 94305 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

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