Zobrazeno 1 - 10
of 31
pro vyhledávání: '"A. Nolan Wilson"'
Publikováno v:
Polymers, Vol 6, Iss 9, Pp 2451-2472 (2014)
The release of monovalent potassium and divalent calcium ions from zwitterionic phosphorylcholine containing poly(2-hydroxyethyl methacrylate) (pHEMA)-based hydrogels was studied and the effects of polymer swelling, ion valence and temperature were i
Externí odkaz:
https://doaj.org/article/602426135af041d78e63ba208de458a6
Publikováno v:
Polymers, Vol 5, Iss 4, Pp 1241-1257 (2013)
In an attempt to recreate the microenvironment necessary for directed hematopoietic stem cell differentiation, control over the amount of ions available to the cells is necessary. The release of potassium ion and calcium ion via the control of cross-
Externí odkaz:
https://doaj.org/article/53830b60bbd0437e9088621c55bc78ec
Autor:
Dutta, Abhijit, Cai, Hao, Talmadge, Michael S., Mukarakate, Calvin, Iisa, Kristiina, Wang, Huamin, Santosa, Daniel M., Ou, Longwen, Hartley, Damon S., Nolan Wilson, A., Schaidle, Joshua A., Griffin, Michael B.
Publikováno v:
In Chemical Engineering Journal 1 January 2023 451 Part 1
Biological conversion of cyclic ketones from catalytic fast pyrolysis with Pseudomonas putida KT2440
Autor:
Andrew J. Borchert, A. Nolan Wilson, William E. Michener, Joseph Roback, William R. Henson, Kelsey J. Ramirez, Gregg T. Beckham
Publikováno v:
Green Chemistry. 25:3278-3291
A chemical fraction enriched in cyclic ketones, was isolated from ex situ catalytic fast pyrolysis (CFP) bio-oil and valorized to hydroxy and dicarboxylic acids by an engineered Pseudomonas putida strain.
Autor:
Jianger Yu, Shawn Martey, Bennett Addison, John R. Dorgan, Bin Tan, Margaret J. Sobkowicz, Nolan Wilson
Publikováno v:
ChemSusChem. 14:4280-4290
Low-density polyethylene (LDPE) is ubiquitous in the packaging industry owing to its flexibility, toughness, and low cost. However, it is typically contaminated with other materials, seriously limiting options for mechanical recycling. Interest in ch
Autor:
Mark R. Nimlos, Kylee Harris, Earl Christensen, Juan Huang, Joshua A. Schaidle, Scott R. Nicholson, Stefano Dell’Orco, Jacquelyn A Perkins, Kristiina Iisa, Matthew J. Grieshop, Joseph Roback, Abhijit Dutta, A. Nolan Wilson, David Chiaramonti, John R. Dorgan
Publikováno v:
Green Chemistry. 23:10145-10156
The scope of this work rests at the interface between food and energy sustainability. Thermochemical conversion of biomass is an attractive strategy for the production of low-cost biofuels, and bio-based insecticides are a more sustainable and often
Autor:
Abhijit Dutta, Hao Cai, Michael S. Talmadge, Calvin Mukarakate, Kristiina Iisa, Huamin Wang, Daniel M. Santosa, Longwen Ou, Damon S. Hartley, A. Nolan Wilson, Joshua A. Schaidle, Michael B. Griffin
Publikováno v:
Chemical Engineering Journal. 451:138485
Autor:
Alexander Bruce, A Nolan Wilson, Sabita Ranabhat, Jaden Montgomery, Scott Nicholson, Kylee Harris, William R Morrison
Publikováno v:
Journal of economic entomology. 115(3)
As fumigants face increasing regulatory restrictions, resistance, and consumer pushback, it is vital to expand the integrated pest management (IPM) chemical toolkit for stored products. The production of biomass derived insecticides (e.g., bio-oil fr
Autor:
Peter C. St. John, Nicholas S. Cleveland, Graham Dominick, Priyanka Singh, William E. Michener, Davinia Salvachúa, Xiunan Yi, Brenna A. Black, Derek R. Vardon, Kelsey J. Ramirez, Chelsea R. Martinez, Adam M. Guss, A. Nolan Wilson, Gregg T. Beckham, Nicholas J. Grundl, Todd A. VanderWall, Nicholas A. Rorrer, Christopher W. Johnson, Payal Khanna, Joshua R. Elmore, Darren J. Peterson, Mary J. Biddy, Yannick J. Bomble
Publikováno v:
Joule. 3:1523-1537
Summary To drive innovation in chemical and material applications beyond what has been afforded by the mature petrochemical industry, new molecules that possess diverse chemical functionality are needed. One source of such molecules lies in the varie
Autor:
Calvin Mukarakate, Joshua A. Schaidle, Gregg T. Beckham, Mark R. Nimlos, Brenna A. Black, William E. Michener, A. Nolan Wilson, Abhijit Dutta, Kim Magrini
Publikováno v:
Green Chemistry. 21:4217-4230
Thermochemical conversion of lignocellulosic biomass is a promising route to produce fuels and oxygenated chemicals and could enable circular carbon utilization. In most thermochemical conversion processes, however, some chemical co-products are lost