Jeremiah A. Johnson
Affiliations: | Chemistry | Massachusetts Institute of Technology, Cambridge, MA, United States |
Area:
Materials synthesisWebsite:
http://web.mit.edu/chemistry/www/faculty/johnson.htmlGoogle:
"Jeremiah Johnson"Bio:
http://web.mit.edu/johnsongroup/
Mean distance: 6.63 | S | N | B | C | P |
Parents
Sign in to add mentorKaren L. Wooley | research assistant | 2001-2004 | Washington University | |
Nicholas J. Turro | grad student | 2009 | Columbia | |
(Construction of Stimuli-Responsive Polymers and Polymer Networks Using Controlled, Living Polymerizations and Highly Efficient Organic Reactions) | ||||
Robert Howard Grubbs | post-doc | 2009-2011 | Caltech | |
David A. Tirrell | post-doc | 2009-2011 | Caltech |
Children
Sign in to add traineeMarco Messina | research assistant | MIT | |
Julia Zhao | research assistant | 2014-2014 | MIT |
Alan E Enciso | grad student | MIT | |
Aleksandr V. Zhukhovitskiy | grad student | 2011-2016 | MIT |
Mao Chen | post-doc | ||
Christopher M. Brown | post-doc | 2019- | MIT |
Craig Stephen Day | post-doc | 2023- | MIT |
Mingjiang Zhong | post-doc | 2013-2016 | MIT |
Matthew R. Golder | post-doc | 2015-2019 | MIT |
Jessica R. Lamb | post-doc | 2017-2020 | MIT |
Alan Enrique Enciso | research scientist | 2016-2016 | MIT |
Collaborators
Sign in to add collaboratorRafael Gomez-Bombarelli | collaborator | ||
Sophia J. Melvin | collaborator | MIT |
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Publications
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Kilgallon LJ, McFadden TP, Sigman MS, et al. (2024) Tricyclononenes and tricyclononadienes as efficient monomers for controlled ROMP: understanding structure-propagation rate relationships and enabling facile post-polymerization modification. Chemical Science. 15: 8334-8345 |
Le Roy H, Song J, Lundberg D, et al. (2024) Valence can control the nonexponential viscoelastic relaxation of multivalent reversible gels. Science Advances. 10: eadl5056 |
Lundberg DJ, Brown CM, Bobylev EO, et al. (2024) Nested non-covalent interactions expand the functions of supramolecular polymer networks. Nature Communications. 15: 3951 |
Lundberg DJ, Ko K, Kilgallon LJ, et al. (2024) Defining Reactivity-Deconstructability Relationships for Copolymerizations Involving Cleavable Comonomer Additives. Acs Macro Letters. 521-527 |
Hu Y, Wang L, Kevlishvili I, et al. (2024) Self-Amplified HF Release and Polymer Deconstruction Cascades Triggered by Mechanical Force. Journal of the American Chemical Society |
Liu B, Rodriguez J, J Kilgallon L, et al. (2024) An organometallic swap strategy for bottlebrush polymer-protein conjugate synthesis. Chemical Communications (Cambridge, England) |
Ko K, Lundberg DJ, Johnson AM, et al. (2024) Mechanism-Guided Discovery of Cleavable Comonomers for Backbone Deconstructable Poly(methyl methacrylate). Journal of the American Chemical Society |
AlFaraj YS, Mohapatra S, Shieh P, et al. (2023) A Model Ensemble Approach Enables Data-Driven Property Prediction for Chemically Deconstructable Thermosets in the Low-Data Regime. Acs Central Science. 9: 1810-1819 |
Zhao J, Bobylev EO, Lundberg DJ, et al. (2023) Polymer Networks with Cubic, Mixed Pd(II) and Pt(II) ML Metal-Organic Cage Junctions: Synthesis and Stress Relaxation Behavior. Journal of the American Chemical Society. 145: 21879-21885 |
Brown CM, Husted KEL, Wang Y, et al. (2023) Thiol-triggered deconstruction of bifunctional silyl ether terpolymers an SAr-triggered cascade. Chemical Science. 14: 8869-8877 |