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Journal of Chemical Theory and Computation
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November 26, 2015
Coarse-Grain Model for Glucose, Cellobiose, and Cellotetraose in Water
Antti-Pekka Hynninen, James F Matthews, Gregg T Beckham, et al.
The Journal of Physical Chemistry. B
|
March 24, 2011
Molecular-level origins of biomass recalcitrance: decrystallization free energies for four common cellulose polymorphs
Gregg T Beckham, James F Matthews, Baron Peters, et al.
The Journal of Biological Chemistry
|
April 13, 2012
Binding preferences, surface attachment, diffusivity, and orientation of a family 1 carbohydrate-binding module on cellulose
Mark R Nimlos, Gregg T Beckham, James F Matthews, et al.
The Journal of Biological Chemistry
|
November 25, 2010
Modeling the self-assembly of the cellulosome enzyme complex
Yannick J Bomble, Gregg T Beckham, James F Matthews, et al.
Journal of Chemical Theory and Computation
|
November 25, 2015
Comparison of Cellulose Iβ Simulations with Three Carbohydrate Force Fields
James F Matthews, Gregg T Beckham, Malin Bergenstråhle-Wohlert, et al.
The Journal of Physical Chemistry. B
|
February 23, 2011
High-temperature behavior of cellulose I
James F Matthews, Malin Bergenstråhle, Gregg T Beckham, et al.
ACS Nano
|
August 31, 2013
3D electron tomography of pretreated biomass informs atomic modeling of cellulose microfibrils
Peter N Ciesielski, James F Matthews, Melvin P Tucker, et al.
Carbohydrate Research
|
November 22, 2005
Computer simulation studies of microcrystalline cellulose Ibeta
James F Matthews, Cathy E Skopec, Philip E Mason, et al.
Current Opinion in Biotechnology
|
December 22, 2011
Harnessing glycosylation to improve cellulase activity
Gregg T Beckham, Ziyu Dai, James F Matthews, et al.
The Journal of Physical Chemistry. B
|
January 7, 2010
Identification of amino acids responsible for processivity in a Family 1 carbohydrate-binding module from a fungal cellulase
Gregg T Beckham, James F Matthews, Yannick J Bomble, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 14) with videos related to
Sort By:
Page
of 2
Journal of Chemical Theory and Computation
|
November 26, 2015
Coarse-Grain Model for Glucose, Cellobiose, and Cellotetraose in Water
Antti-Pekka Hynninen, James F Matthews, Gregg T Beckham, et al.
The Journal of Physical Chemistry. B
|
March 24, 2011
Molecular-level origins of biomass recalcitrance: decrystallization free energies for four common cellulose polymorphs
Gregg T Beckham, James F Matthews, Baron Peters, et al.
The Journal of Biological Chemistry
|
April 13, 2012
Binding preferences, surface attachment, diffusivity, and orientation of a family 1 carbohydrate-binding module on cellulose
Mark R Nimlos, Gregg T Beckham, James F Matthews, et al.
The Journal of Biological Chemistry
|
November 25, 2010
Modeling the self-assembly of the cellulosome enzyme complex
Yannick J Bomble, Gregg T Beckham, James F Matthews, et al.
Journal of Chemical Theory and Computation
|
November 25, 2015
Comparison of Cellulose Iβ Simulations with Three Carbohydrate Force Fields
James F Matthews, Gregg T Beckham, Malin Bergenstråhle-Wohlert, et al.
The Journal of Physical Chemistry. B
|
February 23, 2011
High-temperature behavior of cellulose I
James F Matthews, Malin Bergenstråhle, Gregg T Beckham, et al.
ACS Nano
|
August 31, 2013
3D electron tomography of pretreated biomass informs atomic modeling of cellulose microfibrils
Peter N Ciesielski, James F Matthews, Melvin P Tucker, et al.
Carbohydrate Research
|
November 22, 2005
Computer simulation studies of microcrystalline cellulose Ibeta
James F Matthews, Cathy E Skopec, Philip E Mason, et al.
Current Opinion in Biotechnology
|
December 22, 2011
Harnessing glycosylation to improve cellulase activity
Gregg T Beckham, Ziyu Dai, James F Matthews, et al.
The Journal of Physical Chemistry. B
|
January 7, 2010
Identification of amino acids responsible for processivity in a Family 1 carbohydrate-binding module from a fungal cellulase
Gregg T Beckham, James F Matthews, Yannick J Bomble, et al.
Page
of 2