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Halpern, A.R.; Lee, M.Y.; Howard, M.D.; Woodworth, M.A.; Nicovich, P.R.; Vaughan, J.C. Versatile, do-it-yourself, low-cost spinning disk confocal microscope. Biomed. Opt. Express 2022, 13, 1102–1120. |
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Dedushko, M. A.; Greiner, M. B.; Downing, A. N.; Coggins, M. K.; *Kovacs, J. A. “Electronic Structure and Reactivity of Dioxygen-Derived Aliphatic Thiolate-Ligated Fe-Peroxo and Fe(IV) Oxo Compounds.” J. Am. Chem. Soc. 2022,144, 8515-8528 |
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Sarah M. Zeitler‡, Progyateg Chakma‡, and Matthew R. Golder* Chem. Sci. 2022, 13, 4131. (‡equal contribution) |
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Catalysis, Materials, Organic Chemistry |
Woodworth, M.W.; Ng, K.K.H.; Halpern, A.R.; Pease, N.A.; Nguyen, P.H.B.; #Kueh, H.Y.; #Vaughan, J.C. Multiplexed single-cell profiling of chromatin states at genomic loci by expansion microscopy. Nucleic Acids Res. 2021, e82. |
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Toledo, S.; Poon, P. C. Y.; Gleaves, M.; Rees, J. A.; Kaminsky, W.; *Kovacs, J. A. “Increasing Reactivity by Incorporating pi-Acceptor Ligands into Coordinatively Unsaturated Thiolate-Ligated Iron(II) Complexes” Inorg. Chim. Acta. 2021, 524, 12042. |
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Inorganic Chemistry |
Dedushko, M.; Pikul, J.; *Kovacs, J. A. “Superoxide Oxidation by a Thiolate-Ligated Iron Complex and Anion Inhibition” Inorg. Chem. 2021, 60, 7250-7261 |
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Inorganic Chemistry |
Downing, A. N.; Poon, P. C. Y.; Coggins, M. K.; *Kovacs, J. A. “Influence of Thiolate versus Alkoxide Ligands on the Stability of Crystallographically Characterized Mn(III)-Alkylperoxo Complexes.” J. Am. Chem. Soc. 2021, 143, 6104-6113. (featured in JACS Select) |
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Teng-Wei Wang and Matthew R. Golder* Polym. Chem. 2021, 12, 958. |
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Teng-Wei Wang, Pin-Ruei Huang, Jayme L. Chow, Werner Kaminsky, and Matthew R. Golder* J. Am. Chem. Soc. 2021, 143, 7314. |
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Leonen, C.J.A..; Shimada, M.; Weller, C.E.; Nakadai, T.; Hsu, P.L.; Tyson, E.L.; Mishra, A.; Shelton, P.M.M.; Sadilek, M.; Hawkins, R.D.; Zheng, N.; Roeder, R.G.; Chatterjee, C. Sumoylation of the human histone H4 tail inhibits p300-mediated transcription by RNA polymerase II in cellular extracts. Elife 2021, 10:e67952. |
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Feldman, H. C.; Ghosh, R.; Auyeung, V.; Mueller, J. L.; Kim, J.; Potter, Z. E.; Perera, B. G. K.; Vidadala, V. N.; Olivier, A.; Backes, B. J.; Zikherman, J.; ^Papa, F. R.; ^Maly, D. J. “ATP-Competitive Partial Antagonists of the IRE1α RNase Segregate Outputs of the UPR” Nat. Chem. Biol. 2021, 17, 1148–56. |
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Huang, S. R.; Tureček, F.: Cation Radicals of Hachimoji Nucleobases P and Z. Generation in the Gas Phase and Characterization by UV-Vis Photodissociation Action Spectroscopy and Theory. J. Am. Soc. Mass Spectrom. 2021, 32, 373-386, DOI: 10.1021/jasms.0c00381 |
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Analytical Chemistry, Chemical Biology, Organic Chemistry, Physical Chemistry, Theory and Computation |
Ludwig, J.; Maibaum, L. Effect of alcohol on the phase separation in model membranes. Chemistry and Physics of Lipids 2020, 233, 104986 |
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Luo, Y.; Maibaum, L. Modulated and spiral surface patterns on deformable lipid vesicles. J. Chem. Phys. 2020, 153, 144901 |
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Jacob Finney, Ryan J. DiRisio, and Anne B. McCoy, “ Guided Diffusion Monte Carlo: A Method for Studying Ions tat Display Large Amplitude Vibrational Motions,” J. Phys. Chem. A, 124 9567-9577 (2020). |
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Xu, L. T.; Cooper, D. L.; Dunning, T. H., Jr. Resolving a Puzzling Anomaly in the Spin-Coupled Generalized Valence Bond Description of Benzene. J. Comput. Chem. 2020, 41, 1421-1426. |
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Xu, L. T.; Dunning, T. H., Jr. Orbital Hybridization in Modern Valence Bond Wave Functions: Methane, Ethylene, and Acetylene. J. Phys. Chem. A 2020, 124, 204-214. |
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Xu, L. T.; Dunning, T. H., Jr. The Nature of the Chemical Bond and the Role of non-Dynamical and Dynamical Correlation in Be2. J. Chem. Phys. 2020, 152, 214111. |
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Caitlin E. Cornell, Alexander Mileant, Niket Thakkar, Kelly K. Lee, and Sarah L. Keller, 2020, Direct Imaging of Liquid Domains in Membranes by Cryo Electron Tomography, Proc. Nat. Acad. Sci., 117:19713-19719. |
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Rose, J. C.; Popp, N. A.; Richardson, C. D.; Stephany, J. J.; Mathieu, J.; Wei, C. T.; Corn, J. E.; ^Maly, D. J.; ^Fowler D. M. “Suppression of unwanted CRISPR/Cas9 editing by co-administration of catalytically inactivating truncated guide RNAs” Nat. Comm. 2020, 11, 2697. |
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Canarie, E. R.; Jahn, S.; Stoll, S. Quantitative Structure-Based Prediction of Electron Spin Decoherence in Organic Radicals. J. Phys. Chem. Lett. 2020, 11, 3396–3400 |
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Sweger, S. R.; Pribitzer, S.; Stoll, S. Bayesian Probabilistic Analysis of DEER Spectroscopy Data Using Parametric Distance Distribution Models. J. Phys. Chem. A 2020, 124, 6193–6202 |
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Evans, E. G. B.; Morgan, J. L. W.; DiMaio, F.; Zagotta, W. N.; Stoll, S. Allosteric conformational change of a cyclic nucleotide-gated ion channel revealed by DEER spectroscopy. Proc. Natl. Acad. Sci. U.S.A. 2020, 117, 10839–10847 |
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Mao, C.; Lee, M. Y.; Jhan, J.-R.; Halpern, A. R.; Woodworth, M. A.; Glaser, A. K.; Chozinski, T. J.; Shin, L.; Pippin, J.W.; Shankland, S.J.; Liu, J. T. C.; Vaughan, J. C. Feature-Rich Covalent Stains for Super-Resolution and Cleared-Tissue Fluorescence Microscopy. Sci. Adv. 2020, 6, eaba4542. |
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