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Effect of substituents on the stabilities of multiply-substituted carbon-centered radicals

机译:取代基对多取代碳中心自由基稳定性的影响

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摘要

The bond dissociation energies (BDEs) and radical stabilization energies (RSEs) which result from 166 reactions that lead to carbon-centered radicals of the type center dot CH2X, center dot CHXY and center dot CXYZ, where X, Y and Z are any of the fourteen substituents H, F, Cl, NH2, OH, SH, CH=CH2, C equivalent to CH, BH2, CHO, COOH, CN, CH3, and CF3, were calculated using spin-restricted and -unrestricted variants of the double-hybrid B2-PLYP method with the 6-311+G(3df, 2p) basis set. The interactions of substituents X, Y, and Z in both the radicals (center dot CXYZ) and in the precursor closed-shell molecules (CHXYZ), as well as the extent of additivity of such interactions, were investigated by calculating radical interaction energies (RIEs), molecule interaction energies (MIEs), and deviations from additivity of RSEs (DARSEs) for a set of 152 reactions that lead to di-(center dot CHXY) and tri-(center dot CXYZ) substituted carbon-centered radicals. The pairwise quantities describing the effects of pairs of substituents in trisubstituted systems, namely pairwise MIEs (PMIEs), pairwise RIEs (PRIEs) and deviations from pairwise additivity of RSEs (DPARSEs), were also calculated for the set of 61 reactions that lead to trisubstituted radicals (center dot CXYZ). Both ROB2-PLYP and UB2-PLYP were found to perform quite well in predicting the quantities related to the stabilities of carbon-centered radicals when compared with available experimental data and with the results obtained from the high-level composite method G3X(MP2)-RAD. Particular selections of substituents or combinations of substituents from the current test set were found to lead to specially stable radicals, increasing the RSEs to a maximum of +68.2 kJ mol(-1) for monosubstituted radicals center dot CH2X (X = CH=CH2), +131.7 kJ mol(-1) for disubstituted radicals center dot CHXY (X = NH2, Y = CHO), and +177.1 kJ mol(-1) for trisubstituted radicals center dot CXYZ (X = NH2, Y = Z = CHO).
机译:166个反应导致的键解离能(BDE)和自由基稳定能(RSE)导致中心点CH2X,中心点CHXY和中心点CXYZ类型的碳中心自由基,其中X,Y和Z为以下任意一种使用double的自旋限制性和非限制性变体计算了14个取代基H,F,Cl,NH2,OH,SH,CH = CH2,C等于CH,BH2,CHO,COOH,CN,CH3和CF3的C -6-63 + G(3df,2p)基础集的混合B2-PLYP方法。通过计算自由基相互作用能,研究了自由基(中心点CXYZ)和前体闭壳分子(CHXYZ)中取代基X,Y和Z的相互作用,以及此类相互作用的可加性程度( RIE),分子相互作用能(MIE)和RSE的可加性偏差(DARSE),用于一组152个反应,这些反应导致二(中心点CHXY)和三(中心点CXYZ)取代的以碳为中心的自由基。还针对导致三取代的61组反应计算了描述三取代系统中成对取代基对的成对量,即成对MIE(PMIE),成对RIE(PRIE)和RSE对成对可加性的偏差(DPARSE)。部首(中心点CXYZ)。与现有的实验数据以及从高级复合方法G3X(MP2)获得的结果相比,发现ROB2-PLYP和UB2-PLYP在预测与碳中心自由基的稳定性有关的量方面均表现出色RAD。发现从当前测试集中特别选择取代基或取代基组合会导致特别稳定的自由基,从而使单取代自由基中心点CH2X的RSE最大值增加至+68.2 kJ mol(-1)(X = CH = CH2) ,对于双取代基中心点CHXY(X = NH2,Y = CHO),+ 131.7 kJ mol(-1),对于三取代基中心点CXYZ(X = NH2,Y = Z = CHO,+ 177.1 kJ mol(-1) )。

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