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首页> 外文期刊>Journal of Molecular Structure >Thermochemistry of organic and heteroorganic species. Part XII. Mono- and disubstituted acetylenes and ethynyl free radicals. New electronegativity scale
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Thermochemistry of organic and heteroorganic species. Part XII. Mono- and disubstituted acetylenes and ethynyl free radicals. New electronegativity scale

机译:有机和杂有机物的热化学。第十二部分。单和二取代的乙炔和乙炔基自由基。新的电负性量表

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摘要

The first important result of the present work is that the enthalpy of formation DeltaHdegrees(f) (298 K) for ethynyl HCdropC free radical is now firmly established 123 +/- 2 kcal mol(-1), whereas the most known higher experimental and theoretical values reflect its formation in excited states. For computation of the DeltaHdegreesf HCdropC(.) radical, the most reliable results were obtained by applying isodesmic (formal) reactions (.)CdropN + RCdropCH --> RCdropN + (.)CdropCH. The isodesmic reaction HCdropC(.) + RCdropCH --> HCdropCH + RCdropC(.) is recommended for computation of the DeltaHdegrees(f) for substituted RCdropC(.) radicals. With systematic application of the enthalpic shift procedure for more than 20 classes of compounds and functions supplemented by introduction of sub-types and correction terms, this procedure now can be treated as a completed special methodology in molecules' thermochemistry. Using this methodology, the novel or corrected DeltaHdegrees(f) values for about 120 monosubstituted RCdropCH acetylenes and 50 other compounds were calculated. For calculating the thermochemical properties of molecules and radicals the new electronegativity (EN) scale was elaborated which comprised for a moment about 210 groups. The general requirements for EN scales were formulated. Two scales EN and EN* were proposed for elements with vacant p- or d-orbitals. For the first time, the polarizability effect (PAZ) of a substituent in relation to EN is considered in detail for diverse types of chemical processes and parameters. It is shown that any EN scale can be applied in practice only for a narrow set of structurally similar substituents rather than as an absolute measure. The enthalpies of formation for 75 diacetylenes XCdropCX and XCdropCY are presented. Following the works of McKean on correlation of Delta(vis)(CH) values in gas phase IR spectra with DeltaBDEs (bond dissociation energies), the literature data on vRCdropCH values were applied to calculate the enthalpies of formation for RCdropC(.) free radicals. For the first time, the variable n cm(-1)/kcal(-1) for diverse types of C-H bonds directly linked with EN of C-atom was suggested: similar to 9 cm(-1) for alkane C-atom, similar to 11 cm(-1) for alkenes RCH=CH2 or RCH=CH2, similar to 12 cm(-1) for alkynes RCdropCH and similar to 14 cm(-1) for RCH=O molecules. Analyzing the EN/PAZ interrelationship for particular case of RCdropC-H bond strengths, the DeltaHdegrees(f) values for 12 RCdropC(.) radicals were found from literature vRCdropC-H values and then calculated for additional 42 radicals together with v RCdropCH frequencies. In all these calculations, the value 123 kcal mol(-1) for DeltaHdegrees(f) for HCdropC(.) radical was used. This value was further used to extract from published computed data (after their recalculation), an important thermochemical information on many unstable species (molecules, free radicals, carbenes) valuable for combustion processes. In general, serious inconsistency between our data and literature computed data on thermochemistry of acetylenes and substituted RCdropC(.) radicals was found. (C) 2004 Published by Elsevier B.V.
机译:本工作的第一个重要结果是,现已牢固地确定了乙炔基HCdropC自由基的形成焓DeltaHdegrees(f)(298 K),是123 +/- 2 kcal mol(-1),而最著名的更高的实验温度是理论值反映了它在激发态下的形成。对于DeltaHdegreesf HCdropC(。)自由基的计算,最可靠的结果是通过应用等离子(形式)反应(。)CdropN + RCdropCH-> RCdropN +(。)CdropCH获得的。建议使用等离子反应HCdropC(。)+ RCdropCH-> HCdropCH + RCdropC(。)计算取代的RCdropC(。)自由基的DeltaHdegrees(f)。随着对20多种化合物和功能的焓转移程序的系统应用,并辅以引入亚型和校正术语,该程序现在可以视为分子热化学中完整的特殊方法。使用这种方法,计算出大约120种单取代的RCdropCH乙炔和50种其他化合物的DeltaHdegrees(f)值。为了计算分子和自由基的热化学性质,精心设计了新的电负性(EN)标度,该标度暂时包含约210个基团。制定了EN秤的一般要求。对于具有空p或d轨道的元素,提出了两个标度EN和EN *。首次针对各种类型的化学过程和参数详细考虑了取代基相对于EN的极化率效应(PAZ)。结果表明,任何EN标度只能在实践中仅适用于狭窄的结构相似的取代基集,而不能作为绝对量度。给出了75个二乙炔XCdropCX和XCdropCY的形成焓。继McKean研究了气相红外光谱中Delta(vis)(CH)值与DeltaBDEs(键离解能)的相关性之后,将vRCdropCH值的文献数据用于计算RCdropC(。)自由基的形成焓。 。首次建议变量n cm(-1)/ kcal(-1)用于与CH原子的EN直接连接的各种类型的CH键:与烷烃C原子的9 cm(-1)类似,对于烯烃RCH = CH2或RCH = CH2,类似于11 cm(-1),对于炔烃RCdropCH,类似于12 cm(-1),对于RCH = O分子,类似于14 cm(-1)。通过分析RCdropC-H键强度的特殊情况下的EN / PAZ相互关系,可以从文献vRCdropC-H值中找到12个RCdropC(。)自由基的DeltaHdegrees(f)值,然后针对另外的42个自由基与v RCdropCH频率进行计算。在所有这些计算中,使用了HCdropC(。)自由基的DeltaHdegrees(f)值123 kcal mol(-1)。该值还用于从已发布的计算数据(经过重新计算后)中提取关于燃烧过程中有价值的许多不稳定物质(分子,自由基,卡宾)的重要热化学信息。通常,我们的数据与有关乙炔和取代的RCdropC(。)自由基的热化学文献计算数据之间存在严重的不一致。 (C)2004由Elsevier B.V.发布

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