Matthew M. Brister, Ph.D.

Affiliations: 
2018- Atomic Molecular and Optical Sciences Experimental Group Lawrence Berkeley National Lab, UC Berkeley 
Website:
https://orcid.org/0000-0002-1563-6496
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"Matthew Brister"

Parents

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Carlos E. Crespo Hernandez grad student 2012-2018 Case Western (Chemistry Tree)
Carlos E. Crespo-Hernandez grad student 2012-2018 Case Western (Chemistry Tree)
Carlos E. Crespo-Hernandez post-doc 2018-2018 Case Western (Chemistry Tree)
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Publications

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Severt T, Streeter ZL, Iskandar W, et al. (2022) Step-by-step state-selective tracking of fragmentation dynamics of water dications by momentum imaging. Nature Communications. 13: 5146
Sharma D, Zagore LL, Brister MM, et al. (2021) The kinetic landscape of an RNA-binding protein in cells. Nature
Arpa EM, Brister MM, Hoehn SJ, et al. (2020) On the Origin of the Photostability of DNA and RNA Monomers: Excited State Relaxation Mechanism of the Pyrimidine Chromophore. The Journal of Physical Chemistry Letters
Thurston R, Brister MM, Belkacem A, et al. (2020) Time-resolved ultrafast transient polarization spectroscopy to investigate nonlinear processes and dynamics in electronically excited molecules on the femtosecond time scale. The Review of Scientific Instruments. 91: 053101
Thurston R, Brister MM, Tan LZ, et al. (2020) Ultrafast Dynamics of Excited Electronic States in Nitrobenzene Measured by Ultrafast Transient Polarization Spectroscopy. The Journal of Physical Chemistry. A
Brister MM, Gustavsson T, Crespo-Hernández CE. (2020) Excited State Lifetimes of Sulfur-Substituted DNA and RNA Monomers Probed Using the Femtosecond Fluorescence Up-Conversion Technique. Molecules (Basel, Switzerland). 25
Brister MM, Crespo-Hernández CE. (2019) Excited-State Dynamics in the RNA Nucleotide Uridine 5'-Monophosphate Investigated Using Femtosecond Broadband Transient Absorption Spectroscopy. The Journal of Physical Chemistry Letters. 2156-2161
Farrell KM, Brister MM, Pittelkow M, et al. (2018) Heavy-Atom-Substituted Nucleobases in Photodynamic Applications: Substitution of Sulfur with Selenium in 6-Thioguanine Induces a Remarkable Increase in the Rate of Triplet Decay in 6-Selenoguanine. Journal of the American Chemical Society
Brister MM, Piñero-Santiago LE, Morel M, et al. (2017) Photochemical Relaxation Pathways in Dinitropyrene Isomer Pollutants. The Journal of Physical Chemistry. A
Brister MM, Piñero-Santiago LE, Morel M, et al. (2016) The Photochemical Branching Ratio in 1,6-Dinitropyrene Depends on the Excitation Energy. The Journal of Physical Chemistry Letters. 7: 5086-5092
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