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Research Output 2005 2019

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2019
1 Citation (Scopus)

Comparative analysis of key technologies for cellulosic ethanol production from Brazilian sugarcane bagasse at a commercial scale

Chandel, A. K., Albarelli, J. Q., Santos, D. T., Chundawat, S., Puri, M. & Meireles, M. A. A., Jul 1 2019, In : Biofuels, Bioproducts and Biorefining. 13, 4, p. 994-1014 21 p.

Research output: Contribution to journalArticle

Cellulosic ethanol
Bagasse
Ethanol
Economic analysis
Costs

Impact of Ammonia Pretreatment Conditions on the Cellulose III Allomorph Ultrastructure and Its Enzymatic Digestibility

Sousa, L. D. C., Humpula, J., Balan, V., Dale, B. E. & Chundawat, S. P. S., Sep 3 2019, In : ACS Sustainable Chemistry and Engineering. 7, 17, p. 14411-14424 14 p.

Research output: Contribution to journalArticle

digestibility
ultrastructure
Ammonia
Cellulose
cellulose
Chlorine Compounds
Bast fibers
Ionic Liquids
Hydrochloric Acid
Cellulase
2017
6 Citations (Scopus)

Insights into cellulase-lignin non-specific binding revealed by computational redesign of the surface of green fluorescent protein

Haarmeyer, C. N., Smith, M. D., Chundawat, S., Sammond, D. & Whitehead, T. A., Apr 1 2017, In : Biotechnology and Bioengineering. 114, 4, p. 740-750 11 p.

Research output: Contribution to journalArticle

Cellulase
Lignin
Green Fluorescent Proteins
Proteins
Adsorption
5 Citations (Scopus)

Negatively Supercharging Cellulases Render Them Lignin-Resistant

Whitehead, T. A., Bandi, C. K., Berger, M., Park, J. & Chundawat, S., Jul 3 2017, In : ACS Sustainable Chemistry and Engineering. 5, 7, p. 6247-6252 6 p.

Research output: Contribution to journalArticle

Cellulases
Lignin
lignin
Proteins
Cellulose
1 Citation (Scopus)

Shotgun approach to increasing enzymatic saccharification yields of ammonia fiber expansion pretreated cellulosic biomass

Chundawat, S., Uppugundla, N., Gao, D., Curran, P. G., Balan, V. & Dale, B. E., May 10 2017, In : Frontiers in Energy Research. 5, MAY, 9.

Research output: Contribution to journalArticle

Saccharification
Ammonia
Biomass
Enzymes
Fibers
2016
91 Citations (Scopus)

Next-generation ammonia pretreatment enhances cellulosic biofuel production

Da Costa Sousa, L., Jin, M., Chundawat, S. P. S., Bokade, V., Tang, X., Azarpira, A., Lu, F., Avci, U., Humpula, J., Uppugundla, N., Gunawan, C., Pattathil, S., Cheh, A. M., Kothari, N., Kumar, R., Ralph, J., Hahn, M. G., Wyman, C. E., Singh, S., Simmons, B. A. & 2 others, Dale, B. E. & Balan, V., Apr 2016, In : Energy and Environmental Science. 9, 4, p. 1215-1223 9 p.

Research output: Contribution to journalArticle

Biofuels
Ammonia
biofuel
ammonia
Lignin
2 Citations (Scopus)

Saccharification of thermochemically pretreated cellulosic biomass using native and engineered cellulosomal enzyme systems

Chundawat, S., Paavola, C. D., Raman, B., Nouailler, M., Chan, S. L., Mielenz, J. R., Receveur-Brechot, V., Trent, J. D. & Dale, B. E., Dec 1 2016, In : Reaction Chemistry and Engineering. 1, 6, p. 616-628 13 p.

Research output: Contribution to journalArticle

Saccharification
Biomass
Enzymes
Scaffolds
Complexation
2015
19 Citations (Scopus)

Cellobiohydrolase 1 from Trichoderma reesei degrades cellulose in single cellobiose steps

Brady, S. K., Sreelatha, S., Feng, Y., Chundawat, S. & Lang, M. J., Dec 10 2015, In : Nature communications. 6, 10149.

Research output: Contribution to journalArticle

Cellulose 1,4-beta-Cellobiosidase
Optical Tweezers
Cellobiose
Trichoderma
locomotion
16 Citations (Scopus)

Designer synthetic media for studying microbialcatalyzed biofuel production

Tang, X., Sousa, L. D. C., Jin, M., Chundawat, S. P. S., Chambliss, C. K., Lau, M. W., Xiao, Z., Dale, B. E. & Balan, V., Jan 22 2015, In : Biotechnology for Biofuels. 8, 1, 0179.

Research output: Contribution to journalArticle

Biofuels
biofuel
Fermentation
fermentation
Yeast
32 Citations (Scopus)

Insights into plant cell wall structure, architecture, and integrity using glycome profiling of native and AFEXTM-pretreated biomass

Pattathil, S., Hahn, M. G., Dale, B. E. & Chundawat, S., Jan 1 2015, In : Journal of Experimental Botany. 66, 14, p. 4279-4294 16 p.

Research output: Contribution to journalArticle

Plant Cells
Biomass
Cell Wall
cell walls
Polysaccharides
21 Citations (Scopus)

MARTINI coarse-grained model for crystalline cellulose microfibers

López, C. A., Bellesia, G., Redondo, A., Langan, P., Chundawat, S. P. S., Dale, B. E., Marrink, S. J. & Gnanakaran, S., Jan 15 2015, In : Journal of Physical Chemistry B. 119, 2, p. 465-473 9 p.

Research output: Contribution to journalArticle

microfibers
cellulose
Cellulose
Crystalline materials
Cellobiose
2014
120 Citations (Scopus)

A comparative study of ethanol production using dilute acid, ionic liquid and AFEX™ pretreated corn stover

Uppugundla, N., Da Costa Sousa, L., Chundawat, S. P. S., Yu, X., Simmons, B., Singh, S., Gao, X., Kumar, R., Wyman, C. E., Dale, B. E. & Balan, V., May 13 2014, In : Biotechnology for Biofuels. 7, 1, 72.

Research output: Contribution to journalArticle

Ionic Liquids
Ionic liquids
Zea mays
ethanol
comparative study
23 Citations (Scopus)

Controlled incorporation of deuterium into bacterial cellulose

He, J., Pingali, S. V., Chundawat, S., Pack, A., Jones, A. D., Langan, P., Davison, B. H., Urban, V., Evans, B. & O'Neill, H., Jan 1 2014, In : Cellulose. 21, 2, p. 927-936 10 p.

Research output: Contribution to journalArticle

Deuterium
Cellulose
Neutron scattering
Glycerol
Spectrophotometry
9 Citations (Scopus)
Streptomyces
Carbohydrates
Cellulose
Proteins
Cellulase
59 Citations (Scopus)

Lignin triggers irreversible cellulase loss during pretreated lignocellulosic biomass saccharification

Gao, D., Haarmeyer, C., Balan, V., Whitehead, T. A., Dale, B. E. & Chundawat, S., Nov 27 2014, In : Biotechnology for Biofuels. 7, 1, 0175.

Research output: Contribution to journalArticle

Cellulases
Saccharification
Cellulase
Lignin
Biomass
9 Citations (Scopus)

Probing the nature of AFEX-pretreated corn stover derived decomposition products that inhibit cellulase activity

Humpula, J. F., Uppugundla, N., Vismeh, R., Sousa, L., Chundawat, S., Jones, A. D., Balan, V., Dale, B. E. & Cheh, A. M., Jan 1 2014, In : Bioresource Technology. 152, p. 38-45 8 p.

Research output: Contribution to journalArticle

Cellulase
Ultrafiltration
maize
decomposition
Decomposition
2013
79 Citations (Scopus)

Increased enzyme binding to substrate is not necessary for more efficient cellulose hydrolysis

Gao, D., Chundawat, S., Sethi, A., Balan, V., Gnanakaran, S. & Dale, B. E., Jul 2 2013, In : Proceedings of the National Academy of Sciences of the United States of America. 110, 27, p. 10922-10927 6 p.

Research output: Contribution to journalArticle

Cellulose
Hydrolysis
Cellulases
Enzymes
Biopolymers
10 Citations (Scopus)

Profiling of diferulates (plant cell wall cross-linkers) using ultrahigh-performance liquid chromatography-tandem mass spectrometry

Vismeh, R., Lu, F., Chundawat, S., Humpula, J. F., Azarpira, A., Balan, V., Dale, B. E., Ralph, J. & Jones, A. D., Nov 7 2013, In : Analyst. 138, 21, p. 6683-6692 10 p.

Research output: Contribution to journalArticle

Liquid chromatography
Plant Cells
Polysaccharides
Tandem Mass Spectrometry
Liquid Chromatography
12 Citations (Scopus)

Profiling of soluble neutral oligosaccharides from treated biomass using solid phase extraction and LC-TOF MS

Vismeh, R., Humpula, J. F., Chundawat, S., Balan, V., Dale, B. E. & Jones, A. D., May 15 2013, In : Carbohydrate Polymers. 94, 2, p. 791-799 9 p.

Research output: Contribution to journalArticle

Oligosaccharides
Biomass
Glucans
Ammonia
Esters
2012
47 Citations (Scopus)

An integrated paradigm for cellulosic biorefineries: Utilization of lignocellulosic biomass as self-sufficient feedstocks for fuel, food precursors and saccharolytic enzyme production

Lau, M. W., Bals, B. D., Chundawat, S., Jin, M., Gunawan, C., Balan, V., Jones, A. D. & Dale, B. E., May 1 2012, In : Energy and Environmental Science. 5, 5, p. 7100-7110 11 p.

Research output: Contribution to journalArticle

Enzyme Precursors
Feedstocks
Biomass
Enzymes
enzyme
16 Citations (Scopus)

Coarse-grained model for the interconversion between native and liquid ammonia-treated crystalline cellulose

Bellesia, G., Chundawat, S., Langan, P., Redondo, A., Dale, B. E. & Gnanakaran, S., Jul 19 2012, In : Journal of Physical Chemistry B. 116, 28, p. 8031-8037 7 p.

Research output: Contribution to journalArticle

liquid ammonia
cellulose
Ammonia
Cellulose
ammonia
12 Citations (Scopus)

Guayule as a feedstock for lignocellulosic biorefineries using ammonia fiber expansion (AFEX) pretreatment

Chundawat, S., Chang, L., Gunawan, C., Balan, V., McMahan, C. & Dale, B. E., May 1 2012, In : Industrial Crops and Products. 37, 1, p. 486-492 7 p.

Research output: Contribution to journalArticle

guayule
biorefining
feedstocks
ammonia
pretreatment
2011
34 Citations (Scopus)

Binding characteristics of Trichoderma reesei cellulases on untreated, ammonia fiber expansion (AFEX), and dilute-acid pretreated lignocellulosic biomass

Gao, D., Chundawat, S., Uppugundla, N., Balan, V. & Dale, B. E., Aug 1 2011, In : Biotechnology and Bioengineering. 108, 8, p. 1788-1800 13 p.

Research output: Contribution to journalArticle

Cellulases
Trichoderma
Ammonia
Biomass
Enzymes
540 Citations (Scopus)

Deconstruction of lignocellulosic biomass to fuels and chemicals

Chundawat, S., Beckham, G. T., Himmel, M. E. & Dale, B. E., Jul 15 2011, In : Annual Review of Chemical and Biomolecular Engineering. 2, p. 121-145 25 p.

Research output: Contribution to journalArticle

Biomass
Enzymatic hydrolysis
Cells
Sugars
Fermentation
154 Citations (Scopus)

Hemicellulases and auxiliary enzymes for improved conversion of lignocellulosic biomass to monosaccharides

Gao, D., Uppugundla, N., Chundawat, S., Yu, X., Hermanson, S., Gowda, K., Brumm, P., Mead, D., Balan, V. & Dale, B. E., Feb 24 2011, In : Biotechnology for Biofuels. 4, 5.

Research output: Contribution to journalArticle

monosaccharide
Monosaccharides
Glycoside Hydrolases
Biomass
Enzymes
163 Citations (Scopus)

Influence of physico-chemical changes on enzymatic digestibility of ionic liquid and AFEX pretreated corn stover

Li, C., Cheng, G., Balan, V., Kent, M. S., Ong, M., Chundawat, S., Sousa, L. D. C., Melnichenko, Y. B., Dale, B. E., Simmons, B. A. & Singh, S., Jul 1 2011, In : Bioresource Technology. 102, 13, p. 6928-6936 9 p.

Research output: Contribution to journalArticle

Ionic Liquids
digestibility
Ionic liquids
Ammonia
ammonia
68 Citations (Scopus)

Insights into hydrogen bonding and stacking interactions in cellulose

Parthasarathi, R., Bellesia, G., Chundawat, S., Dale, B. E., Langan, P. & Gnanakaran, S., Dec 15 2011, In : Journal of Physical Chemistry A. 115, 49, p. 14191-14202 12 p.

Research output: Contribution to journalArticle

cellulose
Cellulose
Hydrogen bonds
hydrogen
interactions
300 Citations (Scopus)

Multi-scale visualization and characterization of lignocellulosic plant cell wall deconstruction during thermochemical pretreatment

Chundawat, S., Donohoe, B. S., Da Costa Sousa, L., Elder, T., Agarwal, U. P., Lu, F., Ralph, J., Himmel, M. E., Balan, V. & Dale, B. E., Mar 1 2011, In : Energy and Environmental Science. 4, 3, p. 973-984 12 p.

Research output: Contribution to journalArticle

visualization
Visualization
Cells
Ammonia
ammonia
25 Citations (Scopus)

Probing the early events associated with liquid ammonia pretreatment of native crystalline cellulose

Bellesia, G., Chundawat, S., Langan, P., Dale, B. E. & Gnanakaran, S., Aug 18 2011, In : Journal of Physical Chemistry B. 115, 32, p. 9782-9788 7 p.

Research output: Contribution to journalArticle

liquid ammonia
cellulose
Ammonia
Cellulose
pretreatment
54 Citations (Scopus)

Proteomics-based compositional analysis of complex cellulase-hemicellulase mixtures

Chundawat, S. P. S., Lipton, M. S., Purvine, S. O., Uppugundla, N., Gao, D., Balan, V. & Dale, B. E., Oct 7 2011, In : Journal of Proteome Research. 10, 10, p. 4365-4372 8 p.

Research output: Contribution to journalArticle

Cellulase
Proteomics
Biomass
Cellulases
Hydrolases
16 Citations (Scopus)

Rapid quantification of major reaction products formed during thermochemical pretreatment of lignocellulosic biomass using GC-MS

Humpula, J. F., Chundawat, S., Vismeh, R., Jones, A. D., Balan, V. & Dale, B. E., Apr 15 2011, In : Journal of Chromatography B: Analytical Technologies in the Biomedical and Life Sciences. 879, 13-14, p. 1018-1022 5 p.

Research output: Contribution to journalArticle

Reaction products
Gas chromatography
Gas Chromatography
Biomass
Acetone
198 Citations (Scopus)

Restructuring the crystalline cellulose hydrogen bond network enhances its depolymerization rate

Chundawat, S., Bellesia, G., Uppugundla, N., Da Costa Sousa, L., Gao, D., Cheh, A. M., Agarwal, U. P., Bianchetti, C. M., Phillips, G. N., Langan, P., Balan, V., Gnanakaran, S. & Dale, B. E., Jul 27 2011, In : Journal of the American Chemical Society. 133, 29, p. 11163-11174 12 p.

Research output: Contribution to journalArticle

Depolymerization
Cellulose
Hydrogen
Hydrogen bonds
Crystalline materials
17 Citations (Scopus)

The quest for alternatives to microbial cellulase mix production: Corn stover-produced heterologous multi-cellulases readily deconstruct lignocellulosic biomass into fermentable sugars

Park, S. H., Ransom, C., Mei, C., Sabzikar, R., Qi, C., Chundawat, S., Dale, B. & Sticklen, M., May 1 2011, In : Journal of Chemical Technology and Biotechnology. 86, 5, p. 633-641 9 p.

Research output: Contribution to journalArticle

Cellulases
Cellulase
Sugars
Biomass
Zea mays
2010
34 Citations (Scopus)

Enzymatic digestibility and ethanol fermentability of AFEX-treated starch-rich lignocellulosics such as corn silage and whole corn plant

Shao, Q., Chundawat, S., Krishnan, C., Bals, B., Sousa, L. D. C., Thelen, K. D., Dale, B. E. & Balan, V., Jun 11 2010, In : Biotechnology for Biofuels. 3, 12.

Research output: Contribution to journalArticle

Silage
silage
digestibility
Starch
Ammonia
153 Citations (Scopus)

Mixture optimization of six core glycosyl hydrolases for maximizing saccharification of ammonia fiber expansion (AFEX) pretreated corn stover

Gao, D., Chundawat, S., Krishnan, C., Balan, V. & Dale, B. E., Apr 1 2010, In : Bioresource Technology. 101, 8, p. 2770-2781 12 p.

Research output: Contribution to journalArticle

Hydrolases
Saccharification
Ammonia
ammonia
maize
161 Citations (Scopus)

Multifaceted characterization of cell wall decomposition products formed during ammonia fiber expansion (AFEX) and dilute acid based pretreatments

Chundawat, S., Vismeh, R., Sharma, L. N., Humpula, J. F., da Costa Sousa, L., Chambliss, C. K., Jones, A. D., Balan, V. & Dale, B. E., Nov 1 2010, In : Bioresource Technology. 101, 21, p. 8429-8438 10 p.

Research output: Contribution to journalArticle

Ammonia
ammonia
Cells
decomposition
Decomposition
32 Citations (Scopus)

Strategy for identification of novel fungal and bacterial glycosyl hydrolase hybrid mixtures that can efficiently saccharify pretreated lignocellulosic biomass

Gao, D., Chundawat, S., Liu, T., Hermanson, S., Gowda, K., Brumm, P., Dale, B. E. & Balan, V., Feb 1 2010, In : Bioenergy Research. 3, 1, p. 67-81 15 p.

Research output: Contribution to journalArticle

Hydrolases
glycosidases
Biomass
Enzymes
biomass
2009
26 Citations (Scopus)

Conversion of extracted oil cake fibers into bioethanol including DDGS, canola, sunflower, sesame, soy, and peanut for integrated biodiesel processing

Balan, V., Rogers, C. A., Chundawat, S., Da Costa Sousa, L., Slininger, P. J., Gupta, R. & Dale, B. E., Feb 1 2009, In : JAOCS, Journal of the American Oil Chemists' Society. 86, 2, p. 157-165 9 p.

Research output: Contribution to journalArticle

Bioethanol
Biofuels
Biodiesel
Oils
Ethanol
100 Citations (Scopus)

Enzymatic digestibility and pretreatment degradation products of AFEX-treated hardwoods (populus nigra)

Balan, V., Da Costa Sousa, L., Chundawat, S., Marshall, D., Sharma, L. N., Chambliss, C. K. & Dale, B. E., Mar 1 2009, In : Biotechnology Progress. 25, 2, p. 365-375 11 p.

Research output: Contribution to journalArticle

Populus
Hydrolysis
Zea mays
Ethanol
Chemical Industry
45 Citations (Scopus)

Optimizing harvest of corn stover fractions based on overall sugar yields following ammonia fiber expansion pretreatment and enzymatic hydrolysis

Garlock, R. J., Chundawat, S., Balan, V. & Dale, B. E., Dec 23 2009, In : Biotechnology for Biofuels. 2, 1, p. 1-14 14 p.

Research output: Contribution to journalArticle

Enzymatic hydrolysis
Ammonia
Sugars
Zea mays
hydrolysis
2008
97 Citations (Scopus)

High-throughput microplate technique for enzymatic hydrolysis of lignocellulosic biomass

Chundawat, S., Balan, V. & Dale, B. E., Apr 15 2008, In : Biotechnology and Bioengineering. 99, 6, p. 1281-1294 14 p.

Research output: Contribution to journalArticle

Enzymatic hydrolysis
Biomass
Hydrolysis
Throughput
Cellulose
70 Citations (Scopus)

Mushroom spent straw: A potential substrate for an ethanol-based biorefinery

Balan, V., Da Costa Sousa, L., Chundawat, S., Vismeh, R., Jones, A. D. & Dale, B. E., May 1 2008, In : Journal of Industrial Microbiology and Biotechnology. 35, 5, p. 293-301 9 p.

Research output: Contribution to journalArticle

Agaricales
Straw
Ammonia
Ethanol
Biomass
2007
254 Citations (Scopus)

Effect of particle size based separation of milled corn stover on AFEX pretreatment and enzymatic digestibility

Chundawat, S. P. S., Venkatesh, B. & Dale, B. E., Feb 1 2007, In : Biotechnology and Bioengineering. 96, 2, p. 219-231 13 p.

Research output: Contribution to journalArticle

Explosions
Ammonia
Particle Size
Zea mays
Biomass
144 Citations (Scopus)

Optimization of Ammonia Fiber Expansion (AFEX) pretreatment and enzymatic hydrolysis of Miscanthus x giganteus to fermentable sugars

Murnen, H. K., Balan, V., Chundawat, S. P. S., Bals, B., Sousa, L. D. C. & Dale, B. E., Jul 1 2007, In : Biotechnology Progress. 23, 4, p. 846-850 5 p.

Research output: Contribution to journalArticle

Miscanthus giganteus
enzymatic hydrolysis
Ammonia
Hydrolysis
ammonia