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Covalent organic frameworks based nanomaterials: Design, synthesis, and current status for supercapacitor applications: A review

机译:基于共价有机框架的纳米材料:超级电容器应用的设计,合成和当前状态:综述

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摘要

Covalent organic frameworks (COFs) are emerging crystalline porous materials linked via covalent bonding possessing flexible molecular design and synthetic strategies have been widely investigated and technologically essential materials due to their unique advantages of large surface area and porosity, high modifiable, conjugated structures and sufficient building blocks, low density, and high chemical stability. The success of linking atoms in two and three dimensions to construct extended framework structures moved the chemistry of COFs beyond the structures to methodologies, highlighting prospective applications' possibility. Covalent bonds connect atoms to form molecules and then further link these molecules to giant covalent structures. More specifically, noticeable capacitive response and promising capacitance availability have driven huge attention for efficient energy storage systems. Particular emphasis has been given to correlating their capacitive behavior with varying morphology obtained via various synthetic procedures. However, the most significant stumbling block to their widespread application in electrochemical energy storage systems is the low electrical conductivity and poor electrochemical performance (low specific capacitance) of pristine COFs based materials. The performance of pristine COFs-based materials can be improved by introducing redox-active groups into the skeleton of COFs, morphology control, hydrogen bonding, constructing hybrid systems with conducting polymers, carbon materials, chalcogenides, metal oxides, etc., to fabricate binary/ternary/quaternary nanocomposites with superior features for advanced energy storage applications, have also been outlined. Therefore, numerous efforts have been exerted to exploit the advantages and remedying the disadvantages. In this review paper, firstly, a background overview of COFs is provided, comprised of a brief introduction, merits, and demerits of COFs for supercapacitors are summarized in detail. Afterward, recent advancements of COFs (pristine and composites) design features are emphasized with a discussion about the principles and strategies involved. In the end, challenges remaining in this type of materials for real applications are outlined for supercapacitors.
机译:共价有机框架(COF)是通过共价键合的晶体多孔材料,具有柔性分子设计,合成策略已被广泛调查和技术精美的材料由于其具有大面积和孔隙率,高可修改,共轭结构和足够的建筑物的独特优点块,低密度和高化学稳定性。连接原子在两个和三个维度中的成功构建扩展框架结构将COF的化学移动到方法中的结构中,突出了前瞻性应用的可能性。共价键连接原子以形成分子,然后进一步将这些分子与巨型共价结构相连。更具体地,明显的电容性响应和有前景的电容可用性已经推动了高效的能量存储系统的巨大关注。已经特别强调通过通过各种合成程序获得的不同形态来关联它们的电容性能。然而,在电化学能量存储系统中广泛应用的最重要的绊脚石是基于原始COF的电导率和电化学性能(低比电容)的低电导率和差的电化学性能(低比电容)。通过将氧化还原活性组引入COF,形态控制,氢键,构建具有导电聚合物,碳材料,硫属元素化物,金属氧化物等的杂种系统,可以改善原始COF的材料的性能。制造二进制还概述了具有高级能量存储应用的优越特性的三元/四元纳米复合材料。因此,已经施加了许多努力来利用优势和纠正缺点。在本文中,详细概述了超级电容器的简要介绍,优点和SOF的简要介绍,优点和缺点,提供了COF的背景概述。之后,通过讨论涉及的原则和策略,强调了COFS(原始和复合材料)设计特征的最新进步。最后,对于超级电容器概述了这种实际应用中剩余的挑战。

著录项

  • 来源
    《Journal of Energy Storage》 |2021年第7期|102618.1-102618.16|共16页
  • 作者

    Sajjad Muhammad; Lu Wen;

  • 作者单位

    Yunnan Univ Inst Energy Storage Technol Kunming 650091 Yunnan Peoples R China|Yunnan Univ Coll Chem Sci & Engn Kunming 650091 Yunnan Peoples R China;

    Yunnan Univ Inst Energy Storage Technol Kunming 650091 Yunnan Peoples R China|Yunnan Univ Coll Chem Sci & Engn Kunming 650091 Yunnan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    COFs; Supercapacitors; Electrodes; Energy storage; Covalent organic frameworks;

    机译:COFS;超级电容器;电极;能量存储;共价有机框架;

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