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Molecular Weight Dependence of Methylcellulose Fibrillar Networks
Peter W. Schmidt
, Svetlana Morozova
, Paige M. Owens
, Roland Adden
, Yongfu Li
,
Frank S. Bates
,
Timothy P Lodge
Chemistry (Twin Cities)
Chemical Engineering and Materials Science
Materials Research Science & Engineering Center
Research output
:
Contribution to journal
›
Article
›
peer-review
40
Scopus citations
Overview
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Projects and Grants
(2)
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Dive into the research topics of 'Molecular Weight Dependence of Methylcellulose Fibrillar Networks'. Together they form a unique fingerprint.
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Keyphrases
Molecular Weight Dependence
100%
Methylcellulose
100%
Fibrillar Network
100%
Cryogenic Electron Microscopy
50%
Polymer Chain
50%
Fibril Diameter
50%
Semi-flexible
50%
Kuhn Length
50%
Network Connectivity
25%
Direct Visualization
25%
Short Chain
25%
Gelation
25%
Fibril Structure
25%
Low Molecular Weight
25%
Correlation Length
25%
Cylinder Model
25%
Volume Fraction
25%
Small-angle X-ray Scattering
25%
Preferred Orientation
25%
Weight-average Molecular Weight
25%
Lower Average
25%
Scattered Data
25%
Small Amplitude Oscillatory Shear
25%
Shear Measurement
25%
Contour Length
25%
Helical pitch
25%
Small-angle Light Scattering
25%
Molecular Weight Range
25%
Aqueous Gel
25%
Engineering
Molecular Weight
100%
Molecular Mass
100%
Polymer Chain
66%
Mols
33%
Correlation Length
33%
Oscillatory
33%
Conducted Measurement
33%
Circumferential
33%
Gelation
33%
Average Molecular Weight
33%
Network Connectivity
33%
Preferred Orientation
33%
Molecular Weight Range
33%
Material Science
Volume Fraction
100%
Elasticity
100%
Light Scattering
100%
Cylinder
100%
Biochemistry, Genetics and Molecular Biology
Molecular Weight
100%
Methyl Cellulose
100%
X Ray
20%
Solution and Solubility
20%
Light Scattering
20%
Gelation
20%