...
首页> 外文期刊>Nanoscale >Process of metal–organic framework (MOF)/covalent–organic framework (COF) hybrids-based derivatives and their applications on energy transfer and storage
【24h】

Process of metal–organic framework (MOF)/covalent–organic framework (COF) hybrids-based derivatives and their applications on energy transfer and storage

机译:有机的过程框架(MOF) / covalent-organic框架(咖啡)hybrids-based衍生品和他们的应用程序在能量传递和存储

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The fossil-fuel shortage and severe environmental issues have posed ever-increasing demands on clean and renewable energy sources, for which the exploration of electrocatalysts has been a big challenge toward energy transfer and storage. Some indispensable features of electrocatalysts, such as large surface area, controlled structure, high porosity, and effective functionalization, have been proved to be critical for the improvement of electrocatalytic activities. Recently, the rapid expansion of metal–organic frameworks (MOFs), covalent–organic frameworks (COFs), and porous-organic polymers has provided extensive opportunities for the development of various electrocatalysts. Moreover, combining diverse descriptions of porous–organic frameworks (such as MOFs and COFs) can generate amazing and fantastic properties, affording the formed MOF/COF (including core–shell MOF@MOF and MOF@COF and layer-on-layer MOF-on-MOF or COF-on-MOF) heterostructures wide applications in diverse fields, especially in clean energy and energy transfer. To further boosts electronic conductivity, catalytic performances, and energy storage abilities, these MOF/COF hybrid materials have been widely utilized as versatile precursors for the manufacture of transition metal catalysts embedded within mesoporous carbon nitrides (M@CNx) and porous carbon nitride frameworks (CNx) via a facile pyrolysis process. Given that these M@CNx and CNx hybrids are composed of abundant catalytic centers, rich functionalities, and large specific surface areas, vast applications in energy transfer and energy storage fields can be realized. In this mini-review, we summarize the preparation strategies of MOF/COF-based hybrids, as well as their derivatives, nanostructure formation mechanism of M@CNx and CNx hybrids from MOF/COF-based hybrid materials, and their applications as catalysts for driving diverse reactions and electrode materials for energy storage. Further, current challenges and future prospects of applying these derivatives into energy conversion and storage devices are also discussed.
机译:化石燃料短缺和严重的环境问题提出越来越多的要求清洁和可再生能源的探索electrocatalysts大挑战对能量传递和存储。一些electrocatalysts不可或缺的特性,如大的表面积,控制结构,高孔隙度和有效的功能化,被证明是至关重要的改善electrocatalytic活动。最近,有机配合的快速扩张框架(mof) covalent-organic框架(咖啡),porous-organic聚合物提供了广泛的发展机会各种electrocatalysts。不同的描述porous-organic框架(财政部、咖啡等)可以产生惊人的和神奇的属性,提供形成财政部/咖啡(包括核壳MOF@MOF MOF@COF和在MOF-on-MOF或COF-on-MOF)异质结构广泛应用的多样化领域,尤其是在清洁能源和能源转移。电导率、催化性能和能量存储能力,这些财政部/咖啡混合材料被广泛用作通用的前兆吗生产的过渡金属催化剂嵌入在介孔碳氮化物(M@CNx)和多孔碳氮化框架(CNx)通过一个简单的热解过程。这些M@CNx CNx组成的混合动力车丰富的催化中心,丰富的功能,和大的比表面区域,巨大的应用能量传递和能量存储字段可以实现。本文,我们总结了准备策略的财政部/ COF-based混合动力车以及他们的衍生品,纳米结构的形成M@CNx机制和CNx混合动力车财政部/ COF-based混合材料,他们的应用程序作为驾驶不同的催化剂反应和电极材料的能量存储。应用这些衍生品的前景能量转换和存储设备进行了讨论。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号