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GAS-PHASE INFRARED SPECTROSCOPY FOR DETERMINATION OF DOUBLE-BOND CONFIGURATION OF SOME POLYUNSATURATED PHEROMONES AND RELATED COMPOUNDS

机译:气相红外光谱法测定某些多不饱和费隆及其相关化合物的双键构象

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Gas-phase Fourier transform infrared spectroscopy allows the determination of the geometric configuration of disubstituted carbon-carbon double bonds present in linear polyunsaturated compounds on the basis of the characteristic absorptions observed in the 3036-3011 and 982-947 cm(-1) regions. Although the 3036-3011 cm(-1) band, attributable to a =CH stretch vibration, is conventionally considered to be unreliable for cis/trans determinations, data obtained from a large number of mono- and polyunsaturated acetates show that many useful deductions can be based on this absorption, Double bonds of the RCH=CHR' type separated by at least two methylene groups, present in polyunsaturated compounds, give rise to an absorption at 3013-3011 cm(-1) if the double bonds are not proximal to a functional group or a terminal methyl group, Cis dienes whose double bonds are separated by only a single methylene group show the cis =CH stretch band at 3017 cm(-1). For methylene-interrupted polyenes, this band shows a gradual hypsochromic shift as the unsaturation increases, Furthermore, a band at 1391 cm(-1) was recognized to represent the deformation vibration of the CH2 groups located between the double bonds, The intensity of this band is proportional to the number of skipped methylene groups. I None of the isolated or methylene-interrupted dienes bearing only trans double bonds showed any significant absorptions above 3000 cm(-1). However, spectra of trans-trans conjugated compounds show a =CH stretch band at 3016-3012 cm(-1) as a well-defined shoulder on the high-frequency side of the CH2 asymmetric stretch band, in addition to the wag absorption observed at 984-982 cm(-1), which is highly characteristic for trans-trans conjugated compounds, The spectra of cis-trans or trans-cis conjugated compounds are virtually identical and show a characteristic ''fingerprint'' consisting of two bands of similar intensity at 978-976 and 949-946 cm(-1), in addition to the =C-H stretch band observed at 3021-3017 cm(-1), interestingly, not only are the spectra of conjugated cis-cis compounds devoid of any significant absorption in the 982-947 cm(-1) region, but also the =CH stretch band is broad and appears as a poorly defined shoulder on the high-frequency edge of the CH2 asymmetric stretch band.
机译:气相傅里叶变换红外光谱法可以根据在3036-3011和982-947 cm(-1)区域中观察到的特征吸收来确定线性多不饱和化合物中存在的双取代碳-碳双键的几何构型。尽管通常认为归因于CH拉伸振动的3036-3011 cm(-1)谱带对顺/反式测定不可靠,但从大量单不饱和和多不饱和乙酸酯获得的数据表明,许多有用的推导都可以基于这种吸收,多不饱和化合物中存在的被至少两个亚甲基隔开的RCH = CHR'型双键,如果该双键不邻近,则在3013-3011 cm(-1)处产生吸收官能团或末端甲基是双键仅被一个亚甲基隔开的顺式二烯,在3017 cm(-1)处显示顺式= CH拉伸带。对于亚甲基间断的多烯,该谱带随着不饱和度的增加而显示逐渐的变色位移,此外,在1391 cm(-1)处的谱带被认为代表位于双键之间的CH2基团的形变振动,其强度带与跳过的亚甲基的数目成比例。 I仅具有反式双键的孤立的或亚甲基间断的二烯均未显示出在3000 cm(-1)以上的任何明显吸收。但是,反式-反式-共轭化合物的光谱显示,在3016-3012 cm(-1)处有= CH拉伸带,是CH2不对称拉伸带高频侧的明确肩部,除了观察到的摇摆吸收在984-982 cm(-1)处,这是反式-反式-共轭化合物的高度特征,顺式-反式或反式-顺式-共轭化合物的光谱实际上是相同的,并显示出特征性的``指纹'',由两个除了在3021-3017 cm(-1)处观察到的= CH拉伸带外,在978-976和949-946 cm(-1)处具有相似的强度,有趣的是,共轭顺式-顺式化合物的光谱不仅没有在982-947 cm(-1)区域中有任何明显的吸收,但是= CH拉伸带很宽,并且在CH2不对称拉伸带的高频边缘上显示为定义不清的肩部。

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