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Nicholas V. Hud, Ph.D.

Affiliations: 
Chemistry Georgia Institute of Technology, Atlanta, GA 
Area:
Biophysical Chemistry
Website:
http://www.chemistry.gatech.edu/people/Hud/Nicholas
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"Nicholas Hud"
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Matjaž Polak grad student 2000-2001 Georgia Tech
Christine C. Conwell grad student 2004 Georgia Tech
Igor D. Vilfan grad student 2005 Georgia Tech
Swapan S. Jain grad student 2006 Georgia Tech
Catherine T. Santai grad student 2006 Georgia Tech
Tumpa Sarkar grad student 2007 Georgia Tech
Heather D. Bean grad student 2008 Georgia Tech
Ozgul P. Cetinkol grad student 2008 Georgia Tech
Eric David Horowitz grad student 2004-2009 Georgia Tech
Aaron E. Engelhart grad student 2010 Georgia Tech
Ragan Buckley grad student 2012 Georgia Tech
Brian J. Cafferty grad student 2015 Georgia Tech
C. Denise Okafor grad student 2010-2015 Georgia Tech
Christine He grad student 2017 Georgia Tech
Adriana Lozoya-Colinas grad student 2020 Georgia Tech
Martin C grad student 2021 Georgia Tech
Chiamaka Obianyor grad student 2016-2021 Georgia Tech
Tyler Roche grad student 2022 Georgia Tech
Sara I. Walker post-doc 2010-2011 Georgia Tech (Astronomy Tree)
Irena Mamajanov post-doc 2008-2013 Georgia Tech
Caterina Musetti post-doc 2013-2014 Georgia Tech
Isaac Gállego post-doc 2012-2016 Georgia Tech
Bradley Burcar post-doc 2015-2021 Georgia Tech
Moran Frenkel-Pinter post-doc 2016-2021 Georgia Tech
Sreejith Mangalath post-doc 2020-2021 Georgia Tech
Cesar Menor-Salvan research scientist Georgia Tech
Aikomari Guzman-Martinez research scientist 2016- Georgia Tech
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Publications

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Roche TP, Nedumpurath PJ, Karunakaran SC, et al. (2023) One-Pot Formation of Pairing Proto-RNA Nucleotides and Their Supramolecular Assemblies. Life (Basel, Switzerland). 13
Schuster GB, Hud NV, Alenaizan A. (2022) Structural and Thermodynamic Control of Supramolecular Polymers and DNA Assemblies with Cyanuric Acid: Influence of Substituents and Intermolecular Interactions. The Journal of Physical Chemistry. B. 126: 10758-10767
Roche TP, Fialho DM, Menor-Salvan C, et al. (2022) A Plausible Prebiotic Path to Nucleosides: Ribosides and Related Aldosides are Generated from Ribulose, Fructose, and Similar Abiotic Precursors. Chemistry (Weinheim An Der Bergstrasse, Germany)
C M, Frenkel-Pinter M, Smith KH, et al. (2022) Water-Based Dynamic Depsipeptide Chemistry: Building Block Recycling and Oligomer Distribution Control Using Hydration-Dehydration Cycles. Jacs Au. 2: 1395-1404
Menor-Salván C, Burcar BT, Bouza M, et al. (2022) A Shared Prebiotic Formation of Neopterins and Guanine Nucleosides from Pyrimidine Bases. Chemistry (Weinheim An Der Bergstrasse, Germany). e202201680
Frenkel-Pinter M, Bouza M, Fernández FM, et al. (2022) Thioesters provide a plausible prebiotic path to proto-peptides. Nature Communications. 13: 2569
Menor-Salvan C, Burcar B, Bouza M, et al. (2022) A shared prebiotic formation of neopterins and guanine nucleosides from pyrimidine bases. Chemistry (Weinheim An Der Bergstrasse, Germany)
Frenkel-Pinter M, Jacobson KC, Eskew-Martin J, et al. (2022) Differential Oligomerization of Alpha versus Beta Amino Acids and Hydroxy Acids in Abiotic Proto-Peptide Synthesis Reactions. Life (Basel, Switzerland). 12
Lozoya-Colinas A, Clifton BE, Grover MA, et al. (2022) Urea and Acetamide Rich Solutions Circumvent the Strand Inhibition Problem to Allow Multiple Rounds of DNA and RNA Copying. Chembiochem : a European Journal of Chemical Biology. 23: e202100495
Frenkel-Pinter M, Sargon AB, Glass JB, et al. (2021) Transition metals enhance prebiotic depsipeptide oligomerization reactions involving histidine. Rsc Advances. 11: 3534-3538
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