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ACS Nano|May 23, 2018
Efficient n-Doping and Hole Blocking in Single-Walled Carbon Nanotube Transistors with 1,2,4,5-Tetrakis(tetramethylguanidino)ben-zeneSeverin Schneider, Maximilian Brohmann, Roxana Lorenz, et al.ACS Nano|March 8, 2017
Multifunctional Cellulolytic Enzymes Outperform Processive Fungal Cellulases for Coproduction of Nanocellulose and BiofuelsJohn M Yarbrough, Ruoran Zhang, Ashutosh Mittal, et al.Genetic Testing and Molecular Biomarkers|March 30, 2013
Personal DNA testing in college classrooms: perspectives of students and professorsLori-Ann A Daley, Jennifer K Wagner, Tiffany L Himmel, et al.Carbohydrate Research|November 22, 2005
Computer simulation studies of microcrystalline cellulose IbetaJames F Matthews, Cathy E Skopec, Philip E Mason, et al.Current Opinion in Biotechnology|December 22, 2011
Harnessing glycosylation to improve cellulase activityGregg T Beckham, Ziyu Dai, James F Matthews, et al.Biotechnology Advances|December 6, 2014
Heterologous protein expression in Hypocrea jecorina: a historical perspective and new developmentsArjun Singh, Larry E Taylor, Todd A Vander Wall, et al.Biotechnology for Biofuels|December 8, 2018
Expression of an endoglucanase-cellobiohydrolase fusion protein in Saccharomyces cerevisiae, Yarrowia lipolytica, and Lipomyces starkeyiQi Xu, Markus Alahuhta, Hui Wei, 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 cellulaseGregg T Beckham, James F Matthews, Yannick J Bomble, et al.The FEBS Journal|February 18, 2020
Glycosylation of hyperthermostable designer cellulosome components yields enhanced stability and cellulose hydrolysisAmaranta Kahn, Sarah Moraïs, Daehwan Chung, et al.Chemical Science|June 14, 2021
Carbohydrate-binding module O-mannosylation alters binding selectivity to cellulose and ligninYaohao Li, Xiaoyang Guan, Patrick K Chaffey, et al.Pageof 98