Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Leonel Barreda"'
Autor:
Grant W. Fahnhorst, Brett P. Fors, Angelika E. Neitzel, Jacob T. Trotta, Leonel Barreda, Thomas J. Haversang, Thomas R. Hoye, Marc A. Hillmyer
Publikováno v:
Polymer Chemistry. 10:4573-4583
We report the cationic ring-opening homo- and copolymerization of the 7-membered exocyclic hemiacetal ester 7-methoxyoxepan-2-one (MOPO) to afford poly(7-methoxyoxepan-2-one) [poly(MOPO)] and its copolymers with isobutyl vinyl ether (IBVE) that achie
Autor:
J. Ilja Siepmann, Marc A. Hillmyer, Leonel Barreda, Qile P. Chen, Luis E. Oquendo, Timothy P. Lodge
Publikováno v:
ACS Nano. 12:4351-4361
Molecular dynamics simulations are used to design a series of high-χ block oligomers (HCBOs) that can self-assemble into a variety of mesophases with domain sizes as small as 1 nm. The exploration of these oligomers with various chain lengths, volum
Autor:
Qile P. Chen, Leonel Barreda, Timothy P. Lodge, J. Ilja Siepmann, Zhengyuan Shen, Marc A. Hillmyer
Publikováno v:
Nano letters. 19(7)
Efforts to create block-polymer-based templates with ultrasmall domain sizes has stimulated integrated experimental and theoretical work in an effort to design and prepare self-assembled systems that can achieve unprecedented domain sizes. We recentl
Publikováno v:
Chemistry of Materials. 27:1201-1209
The morphology of the active layer in organic photovoltaics is critical in the optimization of device efficiencies. Most strategies aimed at improving morphology are focused mainly on annealing methods or the use of solvent additives. By using diketo
Autor:
Elad Deiss-Yehiely, Emily A. Beeman, Nicholas A. Sather, Elizabeth M. Waring, Liam C. Palmer, Garrett C. Lau, Hiroaki Sai, Leonel Barreda, Samuel I. Stupp
Publikováno v:
Advanced Functional Materials. 28:1870019
Autor:
Leonel Barreda, Liam C. Palmer, Garrett C. Lau, Nicholas A. Sather, Elizabeth M. Waring, Emily A. Beeman, Hiroaki Sai, Samuel I. Stupp, Elad Deiss-Yehiely
Publikováno v:
Advanced Functional Materials. 28:1702320
In energy storage materials, large surface areas and oriented structures are key architecture design features for improving performance through enhanced electrolyte access and efficient electron conduction pathways. Layered hydroxides provide a tunab
Publikováno v:
Chemistry of Materials; Feb2015, Vol. 27 Issue 4, p1201-1209, 9p