Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include Biofuel production and bioconversion, Microbial Metabolic Engineering and Bioproduction, Catalysis for Biomass Conversion, and Seismic Waves and Analysis.
Rapid Evaluation of Amine-Functionalized Solvents for Biomass Deconstruction Using High-Throughput Screening and One-Pot Enzymatic Saccharification.
Quantitative Dissection of Agrobacterium Virulence to Generate a Synthetic Ti Plasmid.
A membrane-free spot-plating protocol for
<i>Agrobacterium</i>
-mediated transformation of diverse yeasts
Demonstrating a butylamine-based deconstruction method for poplar biomass and conversion by diverse microbial strains
Advances in ionic liquid recycling for lignocellulosic biomass pretreatment
Multi-scale computational screening and mechanistic insights of cyclic amines as solvents for improved lignocellulosic biomass processing
Comparison between two different approaches for the deconstruction of lignocellulosic feedstocks using alkanolamine-based solvents
Deconstructing poplar lignin from ionic liquid pretreatment for biological conversion through sulfonation and Fenton chemistry
Use of a High-Throughput Reactor to Test the Pretreatment Efficiency and Removal of Alkanolamines as Solvents for Biomass Deconstruction
Comparison of the efficacy of a biocompatible and a distillable solvent
for pretreatment of mixed bioenergy feedstocks
Perspective on Lignin Conversion Strategies That Enable Next Generation Biorefineries.
Comparison of microbial strains as candidate hosts and genetic reservoirs for the valorization of lignin streams
Impact of Drought Stress on <i>Sorghum bicolor</i> Yield, Deconstruction, and Microbial Conversion Determined in a Feedstocks-to-Fuels Pipeline
Use of a High-Throughput Reactor to Test the Pretreatment Efficiency and Removal of Alkanolamines as Solvents for Biomass Deconstruction
Maximizing microbial bioproduction from sustainable carbon sources using iterative systems engineering
Engineering Rhodosporidium toruloides for production of 3-hydroxypropionic acid from lignocellulosic hydrolysate.
Enhanced microbial production of protocatechuate from engineered sorghum using an integrated feedstock-to-product conversion technology
Prediction of solubility parameters of lignin and ionic liquids using multi-resolution simulation approaches
Multiscale Molecular Simulation Strategies for Understanding the Delignification Mechanism of Biomass in Cyrene
One-pot ethanol production under optimized pretreatment conditions using agave bagasse at high solids loading with low-cost biocompatible protic ionic liquid
In Situ Synthesis of Protic Ionic Liquids for Biomass Pretreatment
Toward sustainable jet fuels: bioconversion of cellulose into isoprenoid biojet candidates using rumen bacteria and non-conventional yeast
High-Efficiency Conversion of Ionic Liquid-Pretreated Woody Biomass to Ethanol at the Pilot Scale
Use of ensiled biomass sorghum increases ionic liquid pretreatment efficiency and reduces biofuel production cost and carbon footprint
Deconstruction of Woody Biomass via Protic and Aprotic Ionic Liquid Pretreatment for Ethanol Production
Integration of acetic acid catalysis with one-pot protic ionic liquid configuration to achieve high-efficient biorefinery of poplar biomass
A predictive toolset for the identification of effective lignocellulosic pretreatment solvents: a case study of solvents tailored for lignin extraction
Towards understanding of delignification of grassy and woody biomass in cholinium-based ionic liquids
Alkanolamines as Dual Functional Solvents for Biomass Deconstruction and Bioenergy Production
Can Multiple Ions in an Ionic Liquid Improve the Biomass Pretreatment Efficacy?