Literature DB >> 33403521

Metal-organic framework derived nanomaterials for electrocatalysis: recent developments for CO2 and N2 reduction.

Chanderpratap Singh1, Subhabrata Mukhopadhyay1, Idan Hod2.   

Abstract

In recent years, we are witnessing a substantially growing scientific interest in MOFs and their derived materials in the field of electrocatalysis. MOFs acting as a self-sacrificing template offer various advantages for the synthesis of carbon-rich materials, metal oxides, and metal nanostructures containing graphitic carbon-based materials benefiting from the high surface area, porous structure, and abundance of metal sites and organic functionalities. Yet, despite recent advancement in the field of MOF-derived materials, there are still several significant challenges that should be overcomed, to obtain better control and understanding on the factors determining their chemical, structural and catalytic nature. In this minireview, we will discuss recently reported advances in the development of promising methods and strategies for the construction of functional MOF-derived materials and their application as highly-active electrocatalysts for two important energy-related reactions: nitrogen reduction to produce ammonia, and CO2 reduction into carbon-based fuels. Moreover, a discussion containing assessments and remarks on the possible future developments of MOF-derived materials toward efficient electrocatalysis is included.

Entities:  

Keywords:  Electrocatalysis; MOF-derived materials; Metal–organic fameworks (MOFs)

Year:  2021        PMID: 33403521     DOI: 10.1186/s40580-020-00251-6

Source DB:  PubMed          Journal:  Nano Converg        ISSN: 2196-5404


  1 in total

Review 1.  Freestanding Metal-Organic Frameworks and Their Derivatives: An Emerging Platform for Electrochemical Energy Storage and Conversion.

Authors:  Bing He; Qichong Zhang; Zhenghui Pan; Lei Li; Chaowei Li; Ying Ling; Zhixun Wang; Mengxiao Chen; Zhe Wang; Yagang Yao; Qingwen Li; Litao Sun; John Wang; Lei Wei
Journal:  Chem Rev       Date:  2022-04-21       Impact factor: 72.087

  1 in total

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