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Assembly of one dimensional inorganic nanostructures into functional 2D and 3D architectures. Synthesis, arrangement and functionality

机译:一维无机纳米结构组装成功能2D和3D架构。 合成,排列和功能

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摘要

This review will focus on the synthesis, arrangement, structural assembly, for current and future applications, of 1D nanomaterials (tubes, wires, rods) in 2D and 3D ordered arrangements. The ability to synthesize and arrange one dimensional nanomaterials into ordered 2D or 3D micro or macro sized structures is of utmost importance in developing new devices and applications of these materials. Micro and macro sized architectures based on such 1D nanomaterials {e.g. tubes, wires, rods) provide a platform to integrate nanostructures at a larger and thus manageable scale into high performance electronic devices like field effect transistors, as chemo- and biosensors, catalysts, or in energy material applications. Carbon based, metal oxide and metal based 1D arranged materials as well as hybrid or composite 1D materials of the latter provide a broad materials platform, offering a perspective for new entries into fascinating structures and future applications of such assembled architectures. These architectures allow bridging the gap between 1D nanostructures and the micro and macro world and are the basis for an assembly of 1D materials into higher hierarchy domains. This critical review is intended to provide an interesting starting point to view the current state of the art and show perspectives for future developments in this field. The emphasis is on selected nanomaterials and the possibilities for building three dimensional arrays starting from one dimensional building blocks. Carbon nanotubes, metal oxide nanotubes and nanowires (e.g. ZnO, TiO2, V2O5, Cu2O, NiO, Fe2O3), silicon and germanium nanowires, and group III-V or II-VI based 1D semiconductor nanostructures like GaS and GaN, pure metals as well as 1D hybrid materials and their higher organized architectures (foremost in 3D) will be focussed. These materials have been the most intensively studied within the last 5-10 years with respect to nano-micro integration aspects and their functional and application oriented properties. The critical review should be interesting for a broader scientific community (chemists, physicists, material scientists) interested in synthetic and functional material aspects of 1D materials as well as their integration into next higher organized architectures.
机译:本综述将专注于2D和3D订购布置中的1D纳米材料(管,电线,棒)的合成,布置,结构组件,用于电流和未来的应用,以及3D纳米材料(管,电线,棒)。在有序的2D或3D微型或宏尺寸结构中合成和将一维纳米材料合成和排列的能力在开发这些材料的新设备和应用方面至关重要。基于此类1D纳米材料的微型和宏观尺寸架构{例如。管,电线,杆)提供了一种平台,将纳米结构以更大的且可管理的尺度集成成高性能电子设备,如场效应晶体管,作为化学和生物传感器,催化剂或能量材料应用。基于碳的金属氧化物和金属基1D布置的材料以及后者的混合或复合1D材料提供了广泛的材料平台,为新的条目提供了一种迷人的结构和这种组装架构的未来应用的视角。这些架构允许桥接1D纳米结构和微观和宏观世界之间的差距,并且是1D材料组装到更高层次结构域中的基础。这个关键评论旨在提供一个有趣的起点,以查看当前的艺术状态,并显示该领域的未来发展的观点。重点是选定的纳米材料和从一维构建块开始构建三维阵列的可能性。碳纳米管,金属氧化物纳米管和纳米线(例如ZnO,TiO 2,V2O5,Cu 2 O,NiO,Fe 2 O 3),硅和锗纳米线,以及基于III-V或II-Vi的1D基于半导体纳米结构,如气体和GaN,纯金属作为1D混合材料及其较高的有组织的架构(第3D中最重要的)将集中。这些材料在过去5 - 10年内最积极研究了纳米微观整合方面及其功能和应用面向性质。批判性审查对于对1D材料的合成和功能材料方面感兴趣的更广泛的科学界(化学家,物理学家,材料科学家)以及它们集成到下一个更高的有组织的架构中的融合。

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  • 来源
    《Chemical Society Reviews》 |2012年第15期|共28页
  • 作者单位

    Technische Unnersitat Darmstadt Fachbereich Chemie Eduard-Zintl-Institut fiir Anorganische und Physikalische Chemie 64287 Darmstadt Germany.;

    Technische Unnersitat Darmstadt Fachbereich Chemie Eduard-Zintl-Institut fiir Anorganische und Physikalische Chemie 64287 Darmstadt Germany.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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