Abstract Organic‐ligand‐containing frameworks have drawn considerable attention due to their multifunctional properties as well as tunable structures for broad applications. Among numerous synthesis methods developed in the past two decades, electrochemical processing has been demonstrated as one of the most efficient, safe, and facile ways to realize the large‐scale and highly controllable production of organic‐ligand‐containing frameworks. In this review, the progress of electrochemically induced crystallization and thin film fabrication of organic‐ligand‐containing frameworks is summarized in a well‐rounded way. Besides, the mechanism and processing parameters are also discussed. Moreover, the main challenges are also expounded for provi...
The synthesis of thin films of metal organic frameworks (MOFs) is a rapidly growing area owing to th...
An efficient catalyst with a precisely designed and predictable structure is highly desired to optim...
In tandem catalysis, two distinct catalytic materials are interfaced to feed the product of one reac...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2015.Cataloged from ...
© 2016 Elsevier Inc. All rights reserved. Anodic electrochemical synthesis presents itself as a powe...
The electrochemical deposition of Metal-Organic Frameworks (MOFs) is an interesting technique to syn...
Covalent organic frameworks are a class of extended crystalline organic materials that possess uniqu...
The electrochemical deposition of Metal–Organic Frameworks (MOFs) is an interesting technique to syn...
Flexible supercapacitors in modern electronic equipment require light-weight electrodes, which have ...
Metal-Organic Frameworks (MOFs) are a versatile class of materials. Their high surface area combined...
Highly efficient electrocatalysts play important roles in electrochemical water splitting for hydrog...
Several archetypical metal organic frameworks (MOFs), namely, HKUST-1, ZIF-8, MIL-100(Al), MIL-53(...
Developing synthetic methodology to crystallize extended covalent structures has been an important p...
While most efforts in MOF research have been focused on the synthesis and elucidation of new crystal...
Electroreduction of oxoanions affords hydroxide equivalents that induce selective deposition of crys...
The synthesis of thin films of metal organic frameworks (MOFs) is a rapidly growing area owing to th...
An efficient catalyst with a precisely designed and predictable structure is highly desired to optim...
In tandem catalysis, two distinct catalytic materials are interfaced to feed the product of one reac...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2015.Cataloged from ...
© 2016 Elsevier Inc. All rights reserved. Anodic electrochemical synthesis presents itself as a powe...
The electrochemical deposition of Metal-Organic Frameworks (MOFs) is an interesting technique to syn...
Covalent organic frameworks are a class of extended crystalline organic materials that possess uniqu...
The electrochemical deposition of Metal–Organic Frameworks (MOFs) is an interesting technique to syn...
Flexible supercapacitors in modern electronic equipment require light-weight electrodes, which have ...
Metal-Organic Frameworks (MOFs) are a versatile class of materials. Their high surface area combined...
Highly efficient electrocatalysts play important roles in electrochemical water splitting for hydrog...
Several archetypical metal organic frameworks (MOFs), namely, HKUST-1, ZIF-8, MIL-100(Al), MIL-53(...
Developing synthetic methodology to crystallize extended covalent structures has been an important p...
While most efforts in MOF research have been focused on the synthesis and elucidation of new crystal...
Electroreduction of oxoanions affords hydroxide equivalents that induce selective deposition of crys...
The synthesis of thin films of metal organic frameworks (MOFs) is a rapidly growing area owing to th...
An efficient catalyst with a precisely designed and predictable structure is highly desired to optim...
In tandem catalysis, two distinct catalytic materials are interfaced to feed the product of one reac...