A solvent-assisted ligand exchange approach enables metal-organic frameworks with diverse and complex architectures

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作者
Dongbo Yu
Qi Shao
Qingjing Song
Jiewu Cui
Yongli Zhang
Bin Wu
Liang Ge
Yan Wang
Yong Zhang
Yongqiang Qin
Robert Vajtai
Pulickel M. Ajayan
Huanting Wang
Tongwen Xu
Yucheng Wu
机构
[1] Hefei University of Technology,School of Materials Science and Engineering
[2] School of Chemistry and Material Science University of Science and Technology of China,CAS Key Laboratory of Soft Matter Chemistry, Collaborative Innovation Center of Chemistry for Energy Materials
[3] School of Chemistry & Chemical Engineering Anhui University,Key Laboratory of Environment
[4] Rice University,Friendly Polymeric Materials of Anhui Province
[5] University of Szeged,Department of Materials Science and NanoEngineering
[6] Interdisciplinary Excellence Centre,Department of Chemical Engineering
[7] Department of Applied and Environmental Chemistry,undefined
[8] University of Szeged,undefined
[9] Monash University,undefined
来源
Nature Communications | / 11卷
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摘要
Unlike inorganic crystals, metal-organic frameworks do not have a well-developed nanostructure library, and establishing their appropriately diverse and complex architectures remains a major challenge. Here, we demonstrate a general route to control metal-organic framework structure by a solvent-assisted ligand exchange approach. Thirteen different types of metal-organic framework structures have been prepared successfully. To demonstrate a proof of concept application, we used the obtained metal-organic framework materials as precursors for synthesizing nanoporous carbons and investigated their electrochemical Na+ storage properties. Due to the unique architecture, the one-dimensional nanoporous carbon derived from double-shelled ZnCo bimetallic zeolitic imidazolate framework nanotubes exhibits high specific capacity as well as superior rate capability and cycling stability. Our study offers an avenue for the controllable preparation of well-designed meta-organic framework structures and their derivatives, which would further broaden the application opportunities of metal-organic framework materials.
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