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 | 659 | 2013 |
Pretreatment and lignocellulosic chemistry F Hu, A Ragauskas Bioenergy Research 5, 1043-1066, 2012 | 566 | 2012 |
Pseudo-lignin formation and its impact on enzymatic hydrolysis F Hu, S Jung, A Ragauskas Bioresource technology 117, 7-12, 2012 | 447 | 2012 |
Carbohydrate derived‐pseudo‐lignin can retard cellulose biological conversion R Kumar, F Hu, P Sannigrahi, S Jung, AJ Ragauskas, CE Wyman Biotechnology and bioengineering 110 (3), 737-753, 2013 | 254 | 2013 |
Comparison of laboratory delignification methods, their selectivity, and impacts on physiochemical characteristics of cellulosic biomass R Kumar, F Hu, CA Hubbell, AJ Ragauskas, CE Wyman Bioresource technology 130, 372-381, 2013 | 249 | 2013 |
Os CESA 9 conserved‐site mutation leads to largely enhanced plant lodging resistance and biomass enzymatic saccharification by reducing cellulose DP and crystallinity in rice F Li, G Xie, J Huang, R Zhang, Y Li, M Zhang, Y Wang, A Li, X Li, T Xia, ... Plant biotechnology journal 15 (9), 1093-1104, 2017 | 158 | 2017 |
Three lignocellulose features that distinctively affect biomass enzymatic digestibility under NaOH and H2SO4 pretreatments in Miscanthus W Zhang, Z Yi, J Huang, F Li, B Hao, M Li, S Hong, Y Lv, W Sun, ... Bioresource Technology 130, 30-37, 2013 | 143 | 2013 |
Lignin structural alterations in thermochemical pretreatments with limited delignification Y Pu, F Hu, F Huang, AJ Ragauskas BioEnergy Research 8, 992-1003, 2015 | 99 | 2015 |
Investigation of the fate of poplar lignin during autohydrolysis pretreatment to understand the biomass recalcitrance R Samuel, S Cao, BK Das, F Hu, Y Pu, AJ Ragauskas Rsc Advances 3 (16), 5305-5309, 2013 | 94 | 2013 |
Impact of pseudolignin versus dilute acid-pretreated lignin on enzymatic hydrolysis of cellulose F Hu, S Jung, A Ragauskas ACS Sustainable Chemistry & Engineering 1 (1), 62-65, 2012 | 91 | 2012 |
Noble metal catalyzed aqueous phase hydrogenation and hydrodeoxygenation of lignin-derived pyrolysis oil and related model compounds W Mu, H Ben, X Du, X Zhang, F Hu, W Liu, AJ Ragauskas, Y Deng Bioresource technology 173, 6-10, 2014 | 90 | 2014 |
Chemical composition and characterization of cellulose for Agave as a fast-growing, drought-tolerant biofuels feedstock H Li, MB Foston, R Kumar, R Samuel, X Gao, F Hu, AJ Ragauskas, ... RSC advances 2 (11), 4951-4958, 2012 | 89 | 2012 |
Suppression of pseudo-lignin formation under dilute acid pretreatment conditions F Hu, A Ragauskas Rsc Advances 4 (9), 4317-4323, 2014 | 62 | 2014 |
A novel oxidative pretreatment of Loblolly Pine, Sweetgum, and Miscanthus by ozone P Sannigrahi, F Hu, Y Pu, A Ragauskas Journal of Wood Chemistry and Technology 32 (4), 361-375, 2012 | 23 | 2012 |
Topochemical understanding of lignin distribution during hydrothermal flowthrough pretreatment S Jung, HL Trajano, CG Yoo, MB Foston, F Hu, AK Tolbert, CE Wyman, ... ChemistrySelect 3 (32), 9348-9352, 2018 | 14 | 2018 |
The synergistic effect of retinyl propionate and hydroxypinacolone retinoate on skin aging Q Wang, F Hu, X Hu, Y Xie, L Du, R Ye Journal of cosmetic dermatology 22 (7), 2040-2049, 2023 | 13 | 2023 |
ACS Sustainable Chemistry & Engineering F Hu, S Jung, A Ragauskas Sort 50 (100), 200, 2023 | 13 | 2023 |
High stability and low irritation of retinol propionate and hydroxypinacolone retinoate supramolecular nanoparticles with effective anti-wrinkle efficacy D Bai, F Hu, H Xu, J Huang, C Wu, J Zhang, R Ye Pharmaceutics 15 (3), 731, 2023 | 8 | 2023 |
Pseudo-lignin chemistry in pretreatment of biomass for cellulosic biofuel production F Hu Georgia Institute of Technology, 2014 | 8 | 2014 |
Enhanced Skin Permeation of Anti‐Aging Peptides Using Bioactive Ionic Liquids at Low Concentrations M Wang, Z Wang, T Liu, J Zhang, T Shen, F Hu, X Hu, L Du, J Zhang, ... Advanced Functional Materials 33 (42), 2304397, 2023 | 7 | 2023 |