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One-Dimensional Nanostructures: Microfluidic-Based Synthesis Alignment and Integration towards Functional Sensing Devices

机译:一维纳米结构:基于微流体的合成对准和集成到功能传感装置

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摘要

Microfluidic-based synthesis of one-dimensional (1D) nanostructures offers tremendous advantages over bulk approaches e.g., the laminar flow, reduced sample consumption and control of self-assembly of nanostructures. In addition to the synthesis, the integration of 1D nanomaterials into microfluidic chips can enable the development of diverse functional microdevices. 1D nanomaterials have been used in applications such as catalysts, electronic instrumentation and sensors for physical parameters or chemical compounds and biomolecules and hence, can be considered as building blocks. Here, we outline and critically discuss promising strategies for microfluidic-assisted synthesis, alignment and various chemical and biochemical applications of 1D nanostructures. In particular, the use of 1D nanostructures for sensing chemical/biological compounds are reviewed.
机译:一维(1D)纳米结构的基于微流体的合成与批量方法相比具有巨大优势,例如层流,减少的样品消耗以及对纳米结构的自组装的控制。除了合成之外,将一维纳米材料集成到微流控芯片中还可以开发各种功能微器件。一维纳米材料已用于诸如催化剂,电子仪器和物理参数或化学化合物和生物分子的传感器等应用,因此可以被视为构建基块。在这里,我们概述并批判性地讨论了一维纳米结构的微流体辅助合成,比对以及各种化学和生化应用的有前途的策略。特别地,综述了使用一维纳米结构来感测化学/生物化合物。

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