Cathodic electrodeposition lends itself to the formation of biphasic metal–organic framework thin films at room temperature from single deposition baths using potential bias as the main user input. Depending on the applied potential, we selectively deposit two different phases as either bulk mixtures or bilayer films.United States. Dept. of Energy. Office of Basic Energy Sciences (Award DE-SC0006937)3M CompanyMISTI (Hayashi Seed Fund)National Science Foundation (U.S.). Graduate Research Fellowship (Grant 1122374
Zn and Co electrodes have been successfully coated with five different zeolitic imidazolate framewor...
Funding: Support by the Chinese Scholarship Council and the University of St Andrews for a stipend (...
For the first time, a procedure has been established for the growth of surface-anchored metal–organi...
Electroreduction of oxoanions affords hydroxide equivalents that induce selective deposition of crys...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2015.Cataloged from ...
We present the rapid synthesis of a series of metal–organic framework (MOF) thin films on indium tin...
A new method based on patterned metallization and galvanic displacement is demonstrated to easily de...
The electrochemical deposition of Metal-Organic Frameworks (MOFs) is an interesting technique to syn...
Thin films of the metal–organic framework (MOF) <b>NU-1000</b> were grown on conducting glass substr...
While most efforts in MOF research have been focused on the synthesis and elucidation of new crystal...
The electrochemical deposition of Metal–Organic Frameworks (MOFs) is an interesting technique to syn...
Crystalline{,} highly orientated surface-anchored MOF thin films{,} grown on Au substrates{,} were p...
Spectroscopy on metal–organic framework (MOF) films and the molecular phenomena associated to them i...
© 2016 Elsevier Inc. All rights reserved. Anodic electrochemical synthesis presents itself as a powe...
Film deposition is an enabling technology for integration of novel functional materials into real-wo...
Zn and Co electrodes have been successfully coated with five different zeolitic imidazolate framewor...
Funding: Support by the Chinese Scholarship Council and the University of St Andrews for a stipend (...
For the first time, a procedure has been established for the growth of surface-anchored metal–organi...
Electroreduction of oxoanions affords hydroxide equivalents that induce selective deposition of crys...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2015.Cataloged from ...
We present the rapid synthesis of a series of metal–organic framework (MOF) thin films on indium tin...
A new method based on patterned metallization and galvanic displacement is demonstrated to easily de...
The electrochemical deposition of Metal-Organic Frameworks (MOFs) is an interesting technique to syn...
Thin films of the metal–organic framework (MOF) <b>NU-1000</b> were grown on conducting glass substr...
While most efforts in MOF research have been focused on the synthesis and elucidation of new crystal...
The electrochemical deposition of Metal–Organic Frameworks (MOFs) is an interesting technique to syn...
Crystalline{,} highly orientated surface-anchored MOF thin films{,} grown on Au substrates{,} were p...
Spectroscopy on metal–organic framework (MOF) films and the molecular phenomena associated to them i...
© 2016 Elsevier Inc. All rights reserved. Anodic electrochemical synthesis presents itself as a powe...
Film deposition is an enabling technology for integration of novel functional materials into real-wo...
Zn and Co electrodes have been successfully coated with five different zeolitic imidazolate framewor...
Funding: Support by the Chinese Scholarship Council and the University of St Andrews for a stipend (...
For the first time, a procedure has been established for the growth of surface-anchored metal–organi...