Zobrazeno 1 - 10
of 31
pro vyhledávání: '"David J. Lundberg"'
Autor:
David J. Lundberg, Christopher M. Brown, Eduard O. Bobylev, Nathan J. Oldenhuis, Yasmeen S. Alfaraj, Julia Zhao, Ilia Kevlishvili, Heather J. Kulik, Jeremiah A. Johnson
Publikováno v:
Nature Communications, Vol 15, Iss 1, Pp 1-11 (2024)
Abstract Supramolecular polymer networks contain non-covalent cross-links that enable access to broadly tunable mechanical properties and stimuli-responsive behaviors; the incorporation of multiple unique non-covalent cross-links within such material
Externí odkaz:
https://doaj.org/article/6df593b864384798ae6d0c7f158db9c7
Autor:
Alexandre Detappe, Hung V.-T. Nguyen, Yivan Jiang, Michael P. Agius, Wencong Wang, Clelia Mathieu, Nang K. Su, Samantha L. Kristufek, David J. Lundberg, Sachin Bhagchandani, Irene M. Ghobrial, P. Peter Ghoroghchian, Jeremiah A. Johnson
Publikováno v:
Nature Nanotechnology. 18:184-192
Autor:
Gavin R. Kiel, David J. Lundberg, Elisabeth Prince, Keith E. L. Husted, Alayna M. Johnson, Valerie Lensch, Sipei Li, Peyton Shieh, Jeremiah A. Johnson
Publikováno v:
Journal of the American Chemical Society. 144:12979-12988
Many common polymers, especially vinyl polymers, are inherently difficult to chemically recycle and are environmentally persistent. The introduction of low levels of cleavable comonomer additives into existing vinyl polymerization processes could fac
Autor:
David J. Lundberg, Jeremiah A. Johnson, Peyton Shieh, Keith E. L. Husted, Samantha L. Kristufek
Publikováno v:
ACS Macro Letters. 10:805-810
"Drop-in" additives that introduce chemically cleavable bonds into thermosets without compromising thermomechanical properties could enable triggered material deconstruction and enhanced sustainability. While the installation of cleavable bonds into
Autor:
Christopher M. Brown, David J. Lundberg, Jessica R. Lamb, Ilia Kevlishvili, Denise Kleinschmidt, Yasmeen S. Alfaraj, Heather J. Kulik, Maria Francesca Ottaviani, Nathan J. Oldenhuis, Jeremiah A. Johnson
Publikováno v:
Journal of the American Chemical Society. 144(29)
The immobilization of homogeneous catalysts onto supports to improve recyclability while maintaining catalytic efficiency is often a trial-and-error process limited by poor control of the local catalyst environment and few strategies to append cataly
Autor:
Alexandre Detappe, Hung V.-T. Nguyen, Yivan Jiang, Michael P. Agius, Wencong Wang, Clelia Mathieu, Nang K. Su, Samantha L. Kristufek, David J. Lundberg, Sachin Bhagchandani, Irene M. Ghobrial, P. Peter Ghoroghchian, Jeremiah A. Johnson
Publikováno v:
Nature Nanotechnology. 18:419-419
Publikováno v:
ACS Sustainable Chemistry & Engineering. 7:5576-5586
Combined fermentation and thermocatalytic conversion of biomass to isoprene comprises a hybrid process to provide the key monomer in the manufacturing of renewable synthetic rubber. In this work, design and economic evaluation of a chemical process c
Autor:
Michael Rubinstein, Zi Wang, Patricia N. Johnson, Liel Sapir, Tetsu Ouchi, Shu Wang, Jeremiah A. Johnson, Xiaodi Wang, Haley K. Beech, Bradley D. Olsen, Bassil M. El-Zaatari, Stephen L. Craig, Georgi Stoychev, Julia A. Kalow, Scott P. O. Danielsen, Yixin Hu, David J. Lundberg
Publikováno v:
Chemical reviews. 121(8)
Polymer networks are complex systems consisting of molecular components. Whereas the properties of the individual components are typically well understood by most chemists, translating that chemical insight into polymer networks themselves is limited
Autor:
Zi Wang, Stephen L. Craig, Bassil M. El-Zaatari, Nathan Rebello, Jeremiah A. Johnson, Bradley D. Olsen, Haley K. Beech, David J. Lundberg, Tzyy-Shyang Lin, Julia A. Kalow
Publikováno v:
ACS
Polymers are stochastic materials that represent distributions of different molecules. In general, to quantify the distribution, polymer researchers rely on a series of chemical characterizations that each reveal partial information on the distributi
Publikováno v:
ACS Sustainable Chemistry & Engineering. 6:15316-15324
Methyl-e-caprolactone is a monomer used in the manufacture of elastomeric biodegradable polymers with enhanced properties. We present here the conceptual process design for the production of methyl-e-caprolactone from para-cresol, a biorenewable feed