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3D Nanostructures for the Next Generation of High-Performance Nanodevices for Electrochemical Energy Conversion and Storage

机译:用于电化学能转换和储存的下一代高性能纳米型纳米结构

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摘要

Abstract Among the different nanostructures that have been demonstrated as promising materials for various applications, 3D nanostructures have attracted significant attention as building blocks for constructing high‐performance nanodevices. Particularly over the last decade, considerable research efforts have been devoted to designing, fabricating, and evaluating 3D nanostructures as electrodes for electrochemical energy conversion and storage devices. Although remarkable progress has been achieved, the performance of electrochemical energy devices based on 3D nanostructures in terms of energy conversion efficiency, energy storage capability, and device reliability still needs to be significantly improved to meet the requirements for practical applications. Rather than simply outlining and comparing different 3D nanostructures, this article systematically summarizes the general advantages as well as the existing and future challenges of 3D nanostructures for electrochemical energy conversion and storage, focusing on photoelectrochemical water splitting, photoelectrocatalytic solar‐to‐fuels conversion from nitrogen and carbon dioxide, rechargeable metal‐ion batteries, and supercapacitors. A comprehensive understanding of these advantages and challenges shall provide valuable guidelines and enlightenments to facilitate the further development of 3D nanostructured materials, and contribute to the achieving more efficient energy conversion and storage technologies toward a sustainable energy future.
机译:摘要在已被证明为各种应用的有前途的材料中的不同纳米结构中,3D纳米结构引起了构造高性能纳米型的构建块的显着关注。特别是在过去的十年中,已经致力于设计,制造和评估3D纳米结构作为电化学能量转换和存储装置的电极的相当大的研究。尽管已经取得了显着进展,但需要在能量转换效率,能量存储能力和设备可靠性方面基于3D纳米结构的电化学能量装置的性能仍然有显着改善,以满足实际应用的要求。本文而不是简单地概述和比较不同的3D纳米结构,并系统地总结了一般优势以及3D纳米结构对电化学能量转换和储存的现有和未来挑战,专注于光电化学水分解,光电催化太阳能燃料从氮气转化和二氧化碳,可充电金属离子电池和超级电容器。对这些优势和挑战的全面了解,应提供有价值的准则和启示,以促进3D纳米结构材料的进一步发展,并有助于实现更有效的能源转换和储存技术,以实现可持续的能源未来。

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