25th anniversary article: ordered polymer structures for the engineering of photons and phonons.

25th anniversary article: ordered polymer structures for the engineering of photons and phonons.
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DOI:
10.1002/adma.201303456
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发表时间:
2014-01
期刊:
影响因子:
29.4
通讯作者:
Thomas, Edwin L.
Thomas, Edwin L.
中科院分区:
材料科学1区
文献类型:
--
作者:
Lee, Jae-Hwang;Koh, Cheong Yang;Singer, Jonathan P.;Jeon, Seog-Jin;Maldovan, Martin;Stein, Ori;Thomas, Edwin L.

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通过在与材料中光子和声子的特征长度尺度相当且远低于材料中光子和声子的特征长度尺度的各种长度尺度上构建有序的局部和全局结构来工程化光学和声学材料功能是开发新型材料的不可或缺的强大手段。在目前成熟的光子学状态下,聚合物在发光、传感、能源和显示等各种应用领域中发挥着关键作用,尽管其介电常数相对较低,但具有独特的优势。此外,在声子学的新生领域中,聚合物被期望成为上级材料平台,这是由于容易制造具有广泛的机械行为、完整的声子带隙和共振架构的复杂聚合物结构的能力。在这篇综述中,聚合物为中心的光子和声子晶体和超材料的突出,基本概念,制造技术,选择功能聚合物,应用和新兴的想法进行了介绍。
The engineering of optical and acoustic material functionalities via construction of ordered local and global architectures on various length scales commensurate with and well below the characteristic length scales of photons and phonons in the material is an indispensable and powerful means to develop novel materials. In the current mature status of photonics, polymers hold a pivotal role in various application areas such as light-emission, sensing, energy, and displays, with exclusive advantages despite their relatively low dielectric constants. Moreover, in the nascent field of phononics, polymers are expected to be a superior material platform due to the ability for readily fabricated complex polymer structures possessing a wide range of mechanical behaviors, complete phononic bandgaps, and resonant architectures. In this review, polymer-centric photonic and phononic crystals and metamaterials are highlighted, and basic concepts, fabrication techniques, selected functional polymers, applications, and emerging ideas are introduced.
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