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In this and subsequent sections, we will show that oxidative aromatization leads to the synthesis of substituted pyridines, pyrazoles, benzoxazoles, benzimidazoles, benzothiazoles, 2-substituted imidazoles, indoles, pyrimidin-2(1/H)-ones, and anthracenes. In all the sections, oxidizing agents generally used in conventional methods, such as HNO3, DDQ, chloranil, NaNO2, NH4)2Ce(NO3) 6, Cu(NO3)2, Bi(NO3) · 5H2O, Zr(NO3)4, Mn(OAc)3, Pb(OAc)4, MnO2, NiO2, HgO, KMnO4, BaMnO4, AgNO3, PhI(OAc)2, BaSO4, Pd/C, Pd/C-DMSO, COCl)2-DMSO, trichloroisocyanuric acid (TCCA, and o-iodoxybenzoic acid (IBX, diacetoxyiodo) benzene DIB, as well as biological activity, are omitted. For details, please refer to our previously published papers
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2-DMSO, trichloroisocyanuric acid (TCCA), and o-iodoxybenzoic acid (IBX), (diacetoxyiodo) benzene (DIB), as well as biological activity, are omitted. For details, please refer to our previously published papers.
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