首页> 外文期刊>European journal of organic chemistry >Synthesis and Stable-Ion Studies of Regioisomeric Acetylnitropyrenes and Nitropyrenyl Carbinols and GIAO-DFT Study of Nitro Substituent Effects on alpha-Pyrenyl Carbocations
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Synthesis and Stable-Ion Studies of Regioisomeric Acetylnitropyrenes and Nitropyrenyl Carbinols and GIAO-DFT Study of Nitro Substituent Effects on alpha-Pyrenyl Carbocations

机译:区域异构体乙酰基硝基吡啶和硝基苯甲醇的合成及稳定离子研究以及GIAO-DFT研究硝基取代基对α-吡啶碳正离子的影响

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Several regioisomeric acetylnitropyrenes were synthesized from isomeric acetylpyrenes by mild protic nitration. Nitration of 1-acetylpyrene gave the 3-, 6-, and 8-nitro derivatives (with 8-nitro as the major isomer), from which the corresponding carbinols [NO2-Py-CH(OH)CH3; Py = pyrene] were synthesized. Isomeric 4-acetylnitropyrenes and their corresponding carbinols were synthesized by starting from hexahydropyrene through nitration/aromatization/reduction or aromatizationitration/reduction sequences. The molecular structures of 4-acetyl-3-nitropyrene and 1-(6-nitropyren-1-yl) ethanol were established by X-ray analysis. Tetrahydropyrene was the starting point for the synthesis of isomeric nitro-2-acetylpyrenes. Low-temperature protonation of 1-acetyl-8-nitropyrene, 4-acetyl-3-nitropyrene, and 2-acetyl-6-nitropyrene in FSO3H/SO2CIF or in FSO3H/SbF5 (1:1)/SO2CIF resulted in the formation of onium dications (by C=O and NO2 protonation). Charge delocalization (pyrenium ion character) in the carboxonium ions is strongly influenced by the position of the carboxonium group, with the 4-acetyl-3-nitropyrene dication being the most delocalized. Superacid protonation of 1-(3-nitropyren-4-yl)ethanol gave a persistent onium dication rather than an alpha-pyrenyl carbocation. With all other isolated nitropyrenyl carbinol isomers, low-temperature protonation (with FSO3H/SO2CIF) led to polymerization within 5 min standing at dry-ice-acetone temperature. For these cases, vitro substituent effects on the alpha-pyrenyl carbocations were gauged by OFT and GIAO-DFT studies. An interesting relationship between the computed nitro tilt angles and the GIAO-derived charge delocalization modes was observed. ((C) Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008)
机译:通过温和的质子硝化,由异构的乙酰基吡啶合成了几种区域异构的乙酰基硝基吡啶。硝化1-乙酰基re得到3-,6-和8-硝基衍生物(以8-硝基为主要异构体),从中衍生出相应的甲醇[NO2-Py-CH(OH)CH3;合成了Py = pyr]。通过从硝化acetyl开始硝化/芳构化/还原或芳构化/硝化/还原序列,合成了异构的4-乙酰基硝基吡啶及其相应的甲醇。通过X射线分析建立了4-乙酰基-3-硝基py和1-(6-硝基吡啶-1-基)乙醇的分子结构。四氢py是合成异构的硝基-2-乙酰基ren的起点。 FSO3H / SO2CIF或FSO3H / SbF5(1:1)/ SO2CIF中1-乙酰基-8-硝基py,4-乙酰基-3-硝基py和2-乙酰基-6-硝基py的低温质子化导致形成鎓离子(通过C = O和NO2质子化)。碳鎓离子中的电荷离域(re离子特性)受碳鎓基团的位置的强烈影响,其中4-乙酰基-3-硝基py的离子离域最大。 1-(3-硝基吡喃-4-基)乙醇的超酸质子化提供了持久的鎓指示,而不是α-吡喃基碳正离子化。与所有其他分离的硝基吡咯啉甲醇异构体一起,低温质子化(使用FSO3H / SO2CIF)导致在干冰-丙酮温度下静置5分钟即可聚合。对于这些情况,通过OFT和GIAO-DFT研究评估了体外取代基对α-吡啶基碳正离子的影响。观察到在计算的硝基倾斜角和GIAO衍生的电荷离域模式之间的有趣关系。 ((C)Wiley-VCH Verlag GmbH&Co.KGaA,69451 Weinheim,Germany,2008)

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