W. Ryan Osterloh

University of Houston, Houston, TX, United States 
Electroanalytical Chemistry
"W. Osterloh"
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Desbois N, Osterloh WR, Sabat D, et al. (2023) Cobalt tris(4-vinylphenyl)corrole: out of the frying pan into the polymer. Chemical Communications (Cambridge, England)
Osterloh WR, Desbois N, Gros CP, et al. (2022) Hypercorroles Formed via the Tail that Wagged the Dog: Charge Transfer Interactions from Innocent Corroles to -Nitrophenyl Substituents. Inorganic Chemistry. 61: 20576-20586
Naitana ML, Osterloh WR, Di Zazzo L, et al. (2022) The Difficult Marriage of Triarylcorroles with Zinc and Nickel Ions. Inorganic Chemistry
Liu N, Osterloh WR, Huang H, et al. (2022) Synthesis, Characterization, and Electrochemistry of Copper Dibenzoporphyrin( Complexes. Inorganic Chemistry
Osterloh WR, Fang Y, Ou Z and Kadish KM. (2022) Spectroelectrochemical one-electron reduction product of (TPP)Zn in nonaqueous media? Not always the expected porphyrin π-anion radical Journal of Porphyrins and Phthalocyanines. 26: 495-502
Kumar S, Chaudhri N, Osterloh WR, et al. (2021) Nickel(II) monobenzoporphyrins and chlorins: synthesis, electrochemistry and anion sensing properties. Dalton Transactions (Cambridge, England : 2003). 50: 17086-17100
Nemykin VN, Nevonen DE, Osterloh WR, et al. (2021) Application of Lever's Parameter Scale toward Fe(II)/Fe(III) versus Pc(2-)/Pc(1-) Oxidation Process Crossover Point in Axially Coordinated Iron(II) Phthalocyanine Complexes. Inorganic Chemistry. 60: 16626-16644
Osterloh WR, Fang Y, Desbois N, et al. (2021) Here's looking at the reduction of noninnocent copper corroles via anion induced electron transfer Comptes Rendus Chimie. 24: 71-82
Osterloh WR. (2021) Nickel(II) monobenzoporphyrins and chlorins: synthesis, electrochemistry and anion sensing properties Dalton Transactions. 50: 17086-17100
Osterloh WR, Kumar S, Chaudhri N, et al. (2020) Facile Heterogeneous and Homogeneous Anion Induced Electrosynthesis: An Efficient Method for Obtaining π-Extended Porphyrins. Inorganic Chemistry
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