Erin T. Chernick, Ph.D. - Publications

Affiliations: 
2006 Northwestern University, Evanston, IL 
Area:
photoinduced electron transfer and charge transport in organic molecules and materials, artificial and natural photosynthesis, self-assembly of nanoscale materials, spin dynamics of multispin organic molecules, materials for molecule-based optoelectronics

12/20 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2020 Junge MJ, Kordan MA, Chernick ET. Synthesis of Chiral Donor-Acceptor Dyes to Study Electron Transfer Across a Chiral Bridge. The Journal of Organic Chemistry. PMID 33050698 DOI: 10.1021/acs.joc.0c01914  0.343
2020 Grzegorzek N, Mao H, Michel P, Junge MJ, Lorenzo ER, Young RM, Krzyaniak MD, Wasielewski MR, Chernick ET. Metallated Porphyrin Stable Free Radicals: Exploration of Electron-Spin Communication and Dynamics. The Journal of Physical Chemistry. A. PMID 32551620 DOI: 10.1021/Acs.Jpca.0C03176  0.48
2019 Grzegorzek N, Zieleniewska A, Schür A, Maichle-Mössmer C, Killian MS, Guldi DM, Chernick ET. Electronically Tuned Asymmetric meso-Substituted Porphyrins for p-Type Solar Cells. Chempluschem. 84: 766-771. PMID 31944029 DOI: 10.1002/cplu.201900215  0.365
2016 Arantes C, Chernick ET, Gruber M, Rocco MLM, Chassé T, Tykwinski RR, Casu MB. Interplay between Solution Processing and Electronic Structure in Metal-Free Organic Magnets Based on a TEMPO Pentacene Derivative Journal of Physical Chemistry C. 120: 3289-3294. DOI: 10.1021/Acs.Jpcc.5B10028  0.315
2015 Chernick ET, Casillas R, Zirzlmeier J, Gardner DM, Gruber M, Kropp H, Meyer K, Wasielewski MR, Guldi DM, Tykwinski RR. Pentacene appended to a TEMPO stable free radical: the effect of magnetic exchange coupling on photoexcited pentacene. Journal of the American Chemical Society. 137: 857-63. PMID 25478639 DOI: 10.1021/Ja510958K  0.61
2007 Chernick ET, Mi Q, Vega AM, Lockard JV, Ratner MA, Wasielewski MR. Controlling electron transfer dynamics in donor-bridge-acceptor molecules by increasing unpaired spin density on the bridge. The Journal of Physical Chemistry. B. 111: 6728-37. PMID 17309293 DOI: 10.1021/Jp068741V  0.735
2006 Mi Q, Chernick ET, McCamant DW, Weiss EA, Ratner MA, Wasielewski MR. Spin dynamics of photogenerated triradicals in fixed distance electron donor-chromophore-acceptor-TEMPO molecules. The Journal of Physical Chemistry. A. 110: 7323-33. PMID 16759120 DOI: 10.1021/Jp061218W  0.717
2006 Chernick ET, Mi Q, Kelley RF, Weiss EA, Jones BA, Marks TJ, Ratner MA, Wasielewski MR. Electron donor-bridge-acceptor molecules with bridging nitronyl nitroxide radicals: influence of a third spin on charge- and spin-transfer dynamics. Journal of the American Chemical Society. 128: 4356-64. PMID 16569012 DOI: 10.1021/Ja0576435  0.71
2006 Jakob M, Berg A, Stavitski E, Chernick ET, Weiss EA, Wasielewski MR, Levanon H. Photoinduced electron transfer through hydrogen bonds in a rod-like donor-acceptor molecule: A time-resolved EPR study Chemical Physics. 324: 63-71. DOI: 10.1016/J.Chemphys.2005.11.044  0.709
2005 Chernick ET, Ahrens MJ, Scheidt KA, Wasielewski MR. Copper-promoted N-arylations of cyclic imides within six-membered rings: a facile route to arylene-based organic materials. The Journal of Organic Chemistry. 70: 1486-9. PMID 15704992 DOI: 10.1021/Jo0481351  0.611
2004 Weiss EA, Chernick ET, Wasielewski MR. Modulation of radical ion pair lifetimes by the presence of a third spin in rodlike donor-acceptor triads. Journal of the American Chemical Society. 126: 2326-7. PMID 14982435 DOI: 10.1021/Ja039395N  0.735
2004 Weiss EA, Sinks LE, Lukas AS, Chernick ET, Ratner MA, Wasielewski MR. Influence of energetics and electronic coupling on through-bond and through-space electron transfer within U-shaped donor-bridge-acceptor arrays Journal of Physical Chemistry B. 108: 10309-10316. DOI: 10.1021/Jp037756F  0.564
Low-probability matches (unlikely to be authored by this person)
2003 Shi Shun AL, Chernick ET, Eisler S, Tykwinski RR. Synthesis of unsymmetrically substituted 1,3-butadiynes and 1,3,5-hexatriynes via alkylidene carbenoid rearrangements. The Journal of Organic Chemistry. 68: 1339-47. PMID 12585873 DOI: 10.1021/Jo026481H  0.254
2016 Zirzlmeier J, Casillas R, Reddy SR, Coto PB, Lehnherr D, Chernick ET, Papadopoulos I, Thoss M, Tykwinski RR, Guldi DM. Solution-based intramolecular singlet fission in cross-conjugated pentacene dimers. Nanoscale. 8: 10113-23. PMID 27122097 DOI: 10.1039/C6Nr02493A  0.25
2015 Zirzlmeier J, Lehnherr D, Coto PB, Chernick ET, Casillas R, Basel BS, Thoss M, Tykwinski RR, Guldi DM. Singlet fission in pentacene dimers. Proceedings of the National Academy of Sciences of the United States of America. 112: 5325-30. PMID 25858954 DOI: 10.1073/Pnas.1422436112  0.242
2014 Chernick ET, Börzsönyi G, Steiner C, Ammon M, Gessner D, Frühbeisser S, Gröhn F, Maier S, Tykwinski RR. Optically pure, monodisperse cis-oligodiacetylenes: aggregation- induced chirality enhancement. Angewandte Chemie (International Ed. in English). 53: 310-4. PMID 24288289 DOI: 10.1002/Anie.201307904  0.156
2001 Chernick ET, Eisler S, Tykwinski RR. Modification of the Fritsch-Buttenberg-Wiechell rearrangement: A facile route to unsymmetrical butadiynes Tetrahedron Letters. 42: 8575-8578. DOI: 10.1016/S0040-4039(01)01901-3  0.15
2009 Bichler P, Chalifoux WA, Eisler S, Shi Shun AL, Chernick ET, Tykwinski RR. Mechanistic aspects of alkyne migration in alkylidene carbenoid rearrangements. Organic Letters. 11: 519-22. PMID 19128149 DOI: 10.1021/Ol8023665  0.115
2013 Chernick ET, Tykwinski RR. Carbon-rich nanostructures: The conversion of acetylenes into materials Journal of Physical Organic Chemistry. 26: 742-749. DOI: 10.1002/Poc.3160  0.093
2013 Chernick ET, Börzsönyi G, Steiner C, Ammon M, Gessner D, Frühbeißer S, Gröhn F, Maier S, Tykwinski RR. Optisch reine, monodispersecis-Oligodiacetylene: Chiralitätsverstärkung durch Aggregation Angewandte Chemie. 126: 316-320. DOI: 10.1002/Ange.201307904  0.046
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