From lignin to valuable products–strategies, challenges, and prospects H Wang, Y Pu, A Ragauskas, B Yang Bioresource technology 271, 449-461, 2019 | 744 | 2019 |
Ionic liquid as a green solvent for lignin Y Pu, N Jiang, AJ Ragauskas Journal of Wood Chemistry and Technology 27 (1), 23-33, 2007 | 679 | 2007 |
Assessing the molecular structure basis for biomass recalcitrance during dilute acid and hydrothermal pretreatments Y Pu, F Hu, F Huang, BH Davison, AJ Ragauskas Biotechnology for biofuels 6, 1-13, 2013 | 639 | 2013 |
Application of quantitative 31P NMR in biomass lignin and biofuel precursors characterization Y Pu, S Cao, AJ Ragauskas Energy & Environmental Science 4 (9), 3154-3166, 2011 | 575 | 2011 |
The critical role of lignin in lignocellulosic biomass conversion and recent pretreatment strategies: A comprehensive review CG Yoo, X Meng, Y Pu, AJ Ragauskas Bioresource technology 301, 122784, 2020 | 537 | 2020 |
Recent advancements of plant-based natural fiber–reinforced composites and their applications M Li, Y Pu, VM Thomas, CG Yoo, S Ozcan, Y Deng, K Nelson, ... Composites Part B: Engineering 200, 108254, 2020 | 519 | 2020 |
Current understanding of the correlation of lignin structure with biomass recalcitrance M Li, Y Pu, AJ Ragauskas Frontiers in chemistry 4, 45, 2016 | 389 | 2016 |
Determination of hydroxyl groups in biorefinery resources via quantitative 31P NMR spectroscopy X Meng, C Crestini, H Ben, N Hao, Y Pu, AJ Ragauskas, DS Argyropoulos Nature Protocols 14 (9), 2627-2647, 2019 | 353 | 2019 |
Observation of potential contaminants in processed biomass using fourier transform infrared spectroscopy J Zhuang, M Li, Y Pu, AJ Ragauskas, CG Yoo Applied Sciences 10 (12), 4345, 2020 | 341 | 2020 |
The new forestry biofuels sector Y Pu, D Zhang, PM Singh, AJ Ragauskas Biofuels, Bioproducts and Biorefining: Innovation for a sustainable economy …, 2008 | 333 | 2008 |
Ionic liquids: Promising green solvents for lignocellulosic biomass utilization CG Yoo, Y Pu, AJ Ragauskas Current Opinion in Green and Sustainable Chemistry 5, 5-11, 2017 | 330 | 2017 |
Structural characterization and comparison of switchgrass ball-milled lignin before and after dilute acid pretreatment R Samuel, Y Pu, B Raman, AJ Ragauskas Applied biochemistry and biotechnology 162, 62-74, 2010 | 304 | 2010 |
Facile synthesis of spherical cellulose nanoparticles J Zhang, TJ Elder, Y Pu, AJ Ragauskas Carbohydrate Polymers 69 (3), 607-611, 2007 | 297 | 2007 |
Investigation of lignin deposition on cellulose during hydrothermal pretreatment, its effect on cellulose hydrolysis, and underlying mechanisms H Li, Y Pu, R Kumar, AJ Ragauskas, CE Wyman Biotechnology and bioengineering 111 (3), 485-492, 2014 | 283 | 2014 |
A critical review on the analysis of lignin carbohydrate bonds N Giummarella, Y Pu, AJ Ragauskas, M Lawoko Green Chemistry 21 (7), 1573-1595, 2019 | 271 | 2019 |
High shear homogenization of lignin to nanolignin and thermal stability of Nanolignin‐Polyvinyl alcohol blends SS Nair, S Sharma, Y Pu, Q Sun, S Pan, JY Zhu, Y Deng, AJ Ragauskas ChemSusChem 7 (12), 3513-3520, 2014 | 262 | 2014 |
Cellulase kinetics as a function of cellulose pretreatment AS Bommarius, A Katona, SE Cheben, AS Patel, AJ Ragauskas, ... Metabolic engineering 10 (6), 370-381, 2008 | 244 | 2008 |
Cellulosic biorefineries—unleashing lignin opportunities P Sannigrahi, Y Pu, A Ragauskas Current Opinion in Environmental Sustainability 2 (5-6), 383-393, 2010 | 225 | 2010 |
Synergistic enzymatic and microbial lignin conversion C Zhao, S Xie, Y Pu, R Zhang, F Huang, AJ Ragauskas, JS Yuan Green chemistry 18 (5), 1306-1312, 2016 | 210 | 2016 |
Critical review of FDM 3D printing of PLA biocomposites filled with biomass resources, characterization, biodegradability, upcycling and opportunities for biorefineries S Bhagia, K Bornani, R Agrawal, A Satlewal, J Ďurkovič, R Lagaňa, ... Applied Materials Today 24, 101078, 2021 | 199 | 2021 |