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首页> 外文期刊>Journal of mass spectrometry: JMS >Exploring the intrinsic polar [4 + 2~+] cycloaddition reactivity of gaseous carbosulfonium and carboxonium ions
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Exploring the intrinsic polar [4 + 2~+] cycloaddition reactivity of gaseous carbosulfonium and carboxonium ions

机译:探索气态碳ulf和碳car离子的内在极性[4 + 2〜+]环加成反应性

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摘要

Gas-phase reactions of model carbosulfonium ions (CH_3-S ~+ = CH_2; CH_3CH_2-S~+ = CH_2 and Ph-S~+ = CH_2) and an O-analogue carboxonium ion (CH_3-O~+ = CH_2) with acyclic (isoprene, 1,3-butadiene, methyl vinyl ketone) and cyclic (1,3-cyclohexadiene, thiophene, furan) conjugated dienes were systematically investigated by pentaquadrupole mass spectrometry. As corroborated by B3LYP/6-311 G(d,p) calculations, the carbosulfonium ions first react at large extents with the dienes forming adducts via simple addition. The nascent adducts, depending on their stability and internal energy, react further via two competitive channels: (1) in reactions with acyclic dienes via cyclization that yields formally [4 + 2~+] cycloadducts, or (2) in reactions with the cyclic dienes via dissociation by HSR loss that yields methylenation (net CH~+ transfer) products. In great contrast to its S-analogues, CH_3-O~+ = CH_2 (as well as C_2H_5-O+ = CH _2 and Ph-O~+ = CH_2 in reactions with isoprene) forms little or no adduct and proton transfer is the dominant reaction channel. Isomerization to more acidic protonated aldehydes in the course of reaction seems to be the most plausible cause of the contrasting reactivity of carboxonium ions. The CH_2 = CH-O~+ = CH_2 ion forms an abundant [4 + 2~+] cycloadduct with isoprene, but similar to the behavior of such α,β-unsaturated carboxonium ions in solution, seems to occur across the C = C bond.
机译:模型碳bo离子(CH_3-S〜+ = CH_2; CH_3CH_2-S〜+ = CH_2和Ph-S〜+ = CH_2)与O-模拟碳氧离子(CH_3-O〜+ = CH_2)的气相反应通过五四极杆质谱系统研究了非环状(异戊二烯,1,3-丁二烯,甲基乙烯基酮)和环状(1,3-环己二烯,噻吩,呋喃)共轭二烯。正如B3LYP / 6-311 G(d,p)计算所证实的那样,碳ulf离子首先通过简单的加成反应与二烯形成加合物,在很大程度上发生了反应。新生的加合物,取决于其稳定性和内能,通过两个竞争性途径进一步反应:(1)与非环二烯通过环化反应生成正式的[4 + 2〜+]环加合物,或(2)与环加成反应通过HSR损失的解离作用生成二烯,产生亚甲基化(CH〜+净转移)产物。与S-类似物形成鲜明对比的是,CH_3-O〜+ = CH_2(以及与异戊二烯反应的C_2H_5-O + = CH _2和Ph-O〜+ = CH_2)几乎没有或没有加合物形成,质子转移是主要的反应通道。在反应过程中异构化为酸性更强的质子化醛似乎是碳鎓离子反应性相反的最合理的原因。 CH_2 = CH-O〜+ = CH_2离子与异戊二烯形成大量的[4 + 2〜+]环加合物,但类似于溶液中此类α,β-不饱和碳氧离子的行为,似乎跨C = C发生键。

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