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Programmable three-dimensional advanced materials based on nanostructures as building blocks for flexible sensors

机译:基于纳米结构的可编程三维先进材料作为柔性传感器的构建块

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Flexible sensors have garnered a substantial amount of attention recently owing to their potential to revolutionize human lives. The core issue of the growth of high-performance flexible sensors is controlling the attributes of material systems. For the purpose of realizing exotic functions, the use of efficient and extremely practical three-dimensional (3D) systems in device structures is termed as an attractive solution because complex 3D structures are capable of achieving customized behaviors with not only optical but also thermal, mechanical and electrical attributes, which extend their degrees of practicality beyond those that can be attained with conventional, planar material systems. In this review, we first discuss methodologies for the fabrication of 3D multilevel architectures and explain how these programmable materials are capable of enhancing the performance of flexible sensors. Because the electrical, optical and mechanical properties of programmable materials are affected by their structure, shape and size, these factors are of crucial significance in the design and function of flexible sensors. Finally, we offer a discussion on not only recently developed structural materials and their potential applications in flexible sensors but also the key challenges and future directions of this field. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于他们的潜力彻底改变了人类的生活,灵活的传感器最近已经获得了大量的关注。高性能灵活传感器的增长的核心问题正在控制材料系统的属性。为了实现异国功能,在设备结构中使用高效且实用的三维(3D)系统被称为有吸引力的解决方案,因为复杂的3D结构能够实现不仅具有光学而且热,机械的定制行为的定制行为和电气属性,其实用程度远远超出了传统的平面材料系统可以实现的。在该综述中,我们首先讨论用于制造3D多级架构的方法,并解释这些可编程材料如何能够提高柔性传感器的性能。由于可编程材料的电气,光学和机械性能受其结构,形状和尺寸的影响,因此这些因素在柔性传感器的设计和功能方面具有重要意义。最后,我们不仅提供了最近开发的结构材料及其在灵活传感器中的潜在应用的讨论,还提供了该领域的关键挑战和未来方向。 (c)2019年elestvier有限公司保留所有权利。

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