Jon R. Kirchhoff
Affiliations: | The University of Toledo |
Area:
Analytical Chemistry, BiochemistryWebsite:
https://www.utoledo.edu/nsm/chemistry/people/Webpages/Kirchhoff.htmlGoogle:
"Jon Kirchhoff"Mean distance: 8.4
Parents
Sign in to add mentorDavid R. McMillin | grad student | 1984 | Purdue |
Edward A. Deutsch | post-doc | University of Cincinnati | |
William R. Heineman | post-doc | 1985-1989 | University of Cincinnati |
Children
Sign in to add traineeTakayo Inoue | grad student | 2001 | The University of Toledo |
Kasey D. Kovalcik | grad student | 2001 | The University of Toledo |
Tatyana Barkhimer | grad student | 2004 | The University of Toledo |
Stephania J. Messersmith | grad student | 2004 | The University of Toledo |
Olga Shulga | grad student | 2004 | The University of Toledo |
Qinfeng Liu | grad student | 2005 | The University of Toledo |
Jhindan Mukherjee | grad student | 2008 | The University of Toledo |
Kristi Mock | grad student | 2007-2012 | The University of Toledo |
Joshua Young | grad student | 2010-2014 | The University of Toledo |
Ahamad Rohanifar | grad student | 2013-2018 | The University of Toledo |
Govind Shyam Sundar | grad student | 2016-2021 | The University of Toledo |
Abiral Poudel | grad student | 2018-2023 | The University of Toledo |
Sandhya Adhikari | grad student | 2018-2023 | The University of Toledo |
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Publications
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Adhikari S, Sunder GSS, Poudel A, et al. (2023) Application of Poly(caffeic acid) for the Extraction of Critical Rare Earth Elements. Acs Applied Materials & Interfaces |
Sunder GSS, Rohanifar A, Devasurendra AM, et al. (2019) Selective determination of l-DOPA at a graphene oxide/yttrium oxide modified glassy carbon electrode Electrochimica Acta. 301: 192-199 |
Rohanifar A, Rodriguez LB, Devasurendra AM, et al. (2018) Solid-phase microextraction of heavy metals in natural water with a polypyrrole/carbon nanotube/1, 10-phenanthroline composite sorbent material. Talanta. 188: 570-577 |
Devasurendra AM, Zhang C, Young JA, et al. (2017) Electropolymerized Pyrrole-Based Conductive Polymeric Ionic Liquids and their Application for Solid-Phase Microextraction. Acs Applied Materials & Interfaces |
Young JA, Zhang C, Devasurendra AM, et al. (2016) Conductive polymeric ionic liquids for electroanalysis and solid-phase microextraction. Analytica Chimica Acta. 910: 45-52 |
Rohanifar A, Devasurendra AM, Young JA, et al. (2016) Determination of l-DOPA at an optimized poly(caffeic acid) modified glassy carbon electrode Analytical Methods. 8: 7891-7897 |
Young JA, Jiang X, Kirchhoff JR. (2013) Amperometric Detection of Histamine with a Pyrroloquinoline-Quinone Modified Electrode Electroanalysis. 25: 1589-1593 |
Wendland TR, Muntean BS, Kaur J, et al. (2011) In Situ Self Assembly of Thiolated ortho-Quinone Capped Electrocatalysts for Bioanalytical Applications Electroanalysis. 23: 2275-2279 |
Messersmith SJ, Kirschbaum K, Kirchhoff JR. (2010) Luminescent low-valent rhenium complexes with 1,2-bis(dialkylphosphino)ethane ligands. synthesis and X-ray crystallographic, electrochemical, and spectroscopic characterization. Inorganic Chemistry. 49: 3857-65 |
Mukherjee J, Kirchhoff JR. (2009) Electrocatalytic microelectrode detectors for choline and acetylcholine following separation by capillary electrophoresis. Analytical Chemistry. 81: 6996-7002 |