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Copper(I)/NO(g) Reductive Coupling Producing a trans-Hyponitrite Bridged Dicopper(II) Complex: Redox Reversal Giving Copper(I)/NO(g) Disproportionation

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Figshare2017-09-12 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Copper_I_NO_sub_g_sub_Reductive_Coupling_Producing_a_i_trans_i_-Hyponitrite_Bridged_Dicopper_II_Complex_Redox_Reversal_Giving_Copper_I_NO_sub_g_sub_Disproportionation/5400160
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A copper complex, [CuI(tmpa)­(MeCN)]+, effectively reductively couples NO(g) at RT in methanol (MeOH), giving a structurally characterized hyponitrito-dicopper­(II) adduct. Hydrogen-bonding from MeOH is critical for the hyponitrite complex formation and stabilization. This complex exhibits the reverse redox process in aprotic solvents, giving CuI + NO(g), leading to CuI-mediated NO(g)-disproportionation. The relationship of this chemistry to biological iron and/or copper mediated NO(g) reductive coupling to give N2O(g) is discussed.
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2017-09-12
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