Recent Advances to Mediate Reductive Processes of Nitroarenes Using Single-Electron Transfer, Organomagnesium, or Organozinc Reagents. [PDF]
Zhu H, Driver TG.
europepmc +1 more source
Synthesis of 2-Methyl-3-nitropyridines, 2-Styryl-3-nitropyridines and Their Reactions with S-Nucleophiles [PDF]
Vladislav Nikol’skiy +2 more
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Azomethine Ylides-Versatile Synthons for Pyrrolidinyl-Heterocyclic Compounds. [PDF]
Panda SS +3 more
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Decomposition of 4-Nitropyridine
Masatomo Hamana, Hidetoshi Yoshimura
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Selective Chemical Functionalization at N6-Methyladenosine Residues in DNA Enabled by Visible-Light-Mediated Photoredox Catalysis. [PDF]
Nappi M +3 more
europepmc +1 more source
Microwave-Assisted One-Pot Synthetic Pathways for Pyrido[2,3-<i>d</i>]imidazole Derivatives. [PDF]
Orwat B +8 more
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Synthesis and Functionalization of 3-Nitropyridines
The goals for the project “Synthesis and Functionaliszation of 3-Nitropyridines” were first to further optimize the procedures for nitration of 3-nitropyridines, and then investigate some aspects of the mechanism. Further was the reactivity of 3- nitropyridines investigated, especially the reactivity toward nitrogen nucleophiles.
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Transition-metal-free C-H amidation and chlorination: synthesis of N/N'-mono-substituted imidazopyridin-2-ones from N-pyridyl-N-hydroxylamine intermediates. [PDF]
Lee KN +5 more
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Phenacylation of 6-Methyl-Beta-Nitropyridin-2-Ones and Further Heterocyclization of Products. [PDF]
Babaev EV, Rybakov VB.
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C-H arylation of pyridines: high regioselectivity as a consequence of the electronic character of C-H bonds and heteroarene ring. [PDF]
Guo P, Joo JM, Rakshit S, Sames D.
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