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Application and Limitations of Nanocasting in Metal-Organic Frameworks
Camille D. Malonzo
, Zhao Wang
, Jiaxin Duan
, Wenyang Zhao
, Thomas E. Webber
, Zhanyong Li
, In Soo Kim
, Anurag Kumar
,
Aditya Bhan
, Ana E. Platero-Prats
, Karena W. Chapman
, Omar K. Farha
, Joseph T. Hupp
, Alex B.F. Martinson
,
Lee Penn
,
Andreas Stein
Chemical Engineering and Materials Science
Chemistry (Twin Cities)
Materials Research Science & Engineering Center
Inorganometallic Catalyst Design Center
Research output
:
Contribution to journal
›
Article
›
peer-review
23
Scopus citations
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Dive into the research topics of 'Application and Limitations of Nanocasting in Metal-Organic Frameworks'. Together they form a unique fingerprint.
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Keyphrases
Metal-organic Frameworks (MOFs)
100%
Nanocasting
100%
Silica
33%
Oxide-based
16%
High Temperature
16%
All-inorganic
16%
Base Metals
16%
Active Sites
16%
Chemical Stability
16%
Catalytic Metal
16%
Thermally Stable
16%
Pore Size
16%
Metal Clusters
16%
Nanocasting Route
16%
Small Pore
16%
UiO-67
16%
NU-1000
16%
UiO-66
16%
Silica Bodies
16%
Mechanical Stability
16%
Structural Rearrangement
16%
Silica Matrix
16%
Highly Tunable
16%
Secondary Support
16%
Material Feature
16%
High-temperature Catalysis
16%
Inorganic Supports
16%
Ce-metal Organic Frameworks
16%
Cluster Aggregation
16%
Ce-UiO-66
16%
Material Science
Metal-Organic Framework
100%
Nanocasting
100%
Silicon Dioxide
57%
Catalysis
28%
Pore Size
14%
Mechanical Stability
14%
Metal Cluster
14%
Oxide Compound
14%