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Subramaniam, Senthil
124
results:
Search for persons
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Online (124)
Mediatypes
Articles (Online) (82)
Bookchapter (Online) (5)
OpenAccess-fulltext (37)
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1
Wet air oxidation of HTL aqueous waste:
Kilgore, Uriah J.
;
Subramaniam, Senthil
;
Fox, Samuel P.
...
Biomass and Bioenergy. 176 (2023) - p. 106889 , 2023
Link:
https://doi.org/10.1016/..
?
2
Molecular structural dataset of lignin macromolecule elucid..:
Eswaran, Sudha cheranma devi
;
Subramaniam, Senthil
;
Sanyal, Udishnu
..
Scientific Data. 9 (2022) 1 - p. , 2022
Link:
https://doi.org/10.1038/..
?
3
Sustainable Aviation Fuel from Hydrothermal Liquefaction of..:
Cronin, Dylan J.
;
Subramaniam, Senthil
;
Brady, Casper
...
Energies. 15 (2022) 4 - p. 1306 , 2022
Link:
https://doi.org/10.3390/..
?
4
Extended Catalyst Lifetime Testing for HTL Biocrude Hydrotr..:
Subramaniam, Senthil
;
Santosa, Daniel M.
;
Brady, Casper
...
ACS Sustainable Chemistry & Engineering. 9 (2021) 38 - p. 12825-12832 , 2021
Link:
https://doi.org/10.1021/..
?
5
Techno-economic analysis of catalytic hydrothermolysis path..:
Eswaran, Sudha
;
Subramaniam, Senthil
;
Geleynse, Scott
...
Renewable and Sustainable Energy Reviews. 151 (2021) - p. 111516 , 2021
Link:
https://doi.org/10.1016/..
?
6
Uncovering the active sites and demonstrating stable cataly..:
Guo, Mond F.
;
Gray, Michel J.
;
Job, Heather
...
Green Chemistry. 23 (2021) 20 - p. 8030-8039 , 2021
Link:
https://doi.org/10.1039/..
?
7
Selective Dehydration of 2,3-Butanediol to 3-Buten-2-ol ove..:
Sanyal, Udishnu
;
Martinez, Abraham
;
Guo, Mond
...
Energy & Fuels. 35 (2021) 19 - p. 15742-15751 , 2021
Link:
https://doi.org/10.1021/..
?
8
The monolithic α, β crystal structural design of piezoelect..:
Manikandan, N.
;
Valleti, Krishna
;
Karupasamy, K.
..
Sensing and Bio-Sensing Research. 32 (2021) - p. 100418 , 2021
Link:
https://doi.org/10.1016/..
?
9
Dataset for techno-economic analysis of catalytic hydrother..:
Eswaran, Sudha
;
Subramaniam, Senthil
;
Geleynse, Scott
...
Data in Brief. 39 (2021) - p. 107514 , 2021
Link:
https://doi.org/10.1016/..
?
10
Rücktitelbild: Direct Catalytic Conversion of Ethanol to C5..:
Subramaniam, Senthil
;
Guo, Mond F.
;
Bathena, Tanmayi
...
Angewandte Chemie. 132 (2020) 34 - p. 14802-14802 , 2020
Link:
https://doi.org/10.1002/..
?
11
Back Cover: Direct Catalytic Conversion of Ethanol to C5+Ke..:
Subramaniam, Senthil
;
Guo, Mond F.
;
Bathena, Tanmayi
...
Angewandte Chemie International Edition. 59 (2020) 34 - p. 14694-14694 , 2020
Link:
https://doi.org/10.1002/..
?
12
Direct Catalytic Conversion of Ethanol to C5+Ketones: Role ..:
Subramaniam, Senthil
;
Guo, Mond F.
;
Bathena, Tanmayi
...
Angewandte Chemie International Edition. 59 (2020) 34 - p. 14550-14557 , 2020
Link:
https://doi.org/10.1002/..
?
13
Direct Catalytic Conversion of Ethanol to C5+ Ketones: Role..:
Subramaniam, Senthil
;
Guo, Mond F.
;
Bathena, Tanmayi
...
Angewandte Chemie. 132 (2020) 34 - p. 14658-14665 , 2020
Link:
https://doi.org/10.1002/..
?
14
Pretreatment of milk thistle seed to increase the silymarin..:
Subramaniam, Senthil
;
Vaughn, Katherine
;
Carrier, Danielle Julie
.
Bioresource Technology. 99 (2008) 7 - p. 2501-2506 , 2008
Link:
https://doi.org/10.1016/..
?
15
A Novel On-Chip Diagnostic Method to Measure Burn Rates of ..:
Bhattacharya, Shantanu
;
Gao, Yuanfang
;
Apperson, Steven
...
Journal of Energetic Materials. 24 (2006) 1 - p. 1-15 , 2006
Link:
https://doi.org/10.1080/..
1-15