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Cooperative Activation of Cellulose with Natural Calcium
Gregory G. Facas
, Vineet Maliekkal
, Cheng Zhu
,
Matthew Neurock
,
Paul J. Dauenhauer
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
8
Scopus citations
Overview
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Keyphrases
Cellulose
100%
Ca2+ Ions
100%
Cooperative Activation
100%
Cooperativity
50%
High Temperature
50%
Surface Reaction
50%
Solid Reaction
50%
Transition State
50%
Activation Barrier
50%
Ether
50%
Scission
50%
Rate Dependence
50%
Glycosidic Bond
50%
Transglycosylation
50%
Second-order Rate
50%
Renewable Applications
50%
Hydrogen Bonds (H-bonds)
50%
Catalyzed Reaction
50%
Density Functional Theory (DFT) Calculations
50%
Binding Configurations
50%
Chemistry
Cellulose
100%
First Principle
50%
Transition State
50%
Transglycosylation
50%
Density Functional Theory
50%
Surface Reaction
50%
Glycosylation
50%
Engineering
Mols
100%
Renewables
50%
Rate Dependence
50%
Millisecond
50%
Glycosidic Bond
50%
Material Science
Density
100%
Surface Reaction
100%
Chemical Engineering
Second-order Rate
100%