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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Infrared Spectra of (Z)- and (E)-(C2H3C)-C-center dot(CH3)I Radicals Produced upon Photodissociation of (Z)- and (E)-(CH2I)HC=C(CH3)I in Solid para-Hydrogen
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Infrared Spectra of (Z)- and (E)-(C2H3C)-C-center dot(CH3)I Radicals Produced upon Photodissociation of (Z)- and (E)-(CH2I)HC=C(CH3)I in Solid para-Hydrogen

机译:(Z) - 和(e) - (C2H3C)-C中心点(CH3)I基团在(Z) - (e) - (e) - (CH 2 1)HC = C(CH 3)I中产生的-C中心点(CH3)I基团 氢气

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Ozonolysis of isoprene to produce Criegee intermediates such as methyl vinyl ketone oxide (MVKO), C2H3C(CH3)OO, is an important process in atmospheric chemistry. MVKO was recently produced and identified in laboratories after photolysis of a gaseous mixture of 1,3-diiodobut-2-ene, (CH2I)HC=C(CH3)I, and O-2, but the mechanism of its formation remains unexplored. We synthesized pure (Z)- and (E)-1,3-diiodo-but-2-ene and measured their distinct IR spectra. Upon irradiation at 280 nm of (Z)-and (E)-1,3-diiodo-but-2-ene in solid p-H-2 at 3.3 K, the fission of the terminal C.I bond yields (Z)- and (E)-3-iodo-but-2-en-1-yl [(C2H3C)-C-center dot(CH3)I] radicals, respectively. These radicals were characterized with infrared absorption lines at 2962.4, 1423.8, 1265.3, 1120.9/1127.0, 921.4/922.3, and 792.5/791.7 cm(-1), and 16 additional weaker lines for (Z)-(C2H3C)-C-center dot(CH3)I and 1405.2, 1208.2, 1106.0/1103.9, 934.2/933.4, and 785.1/784.9 cm(-1) and five additional weaker ones for (E)-(C2H3C)-C-center dot(CH3)I. The assignments were derived according to behavior on secondary photolysis and comparison of the vibrational wavenumbers and the IR intensities of observed lines with those calculated with the B2PLYP-D3/aug-cc-pVTZ-pp method. These observations confirmed that only the terminal I atom, not the central one, was photodissociated at 280 nm and, in solid p-H-2, the excess energy after photodissociation induced no change in conformation. These new spectra of center dot C2H3C(CH3)I radicals can provide valuable information for the understanding of the mechanism of formation of Criegee intermediate MVKO from the source reaction of photolysis of (CH2I)HC=C(CH3)I in O-2 in the laboratory.
机译:异戊二烯的臭氧分解以产生克里奇中间体如甲基乙烯基酮氧化物(MVKO),C2H3C(CH3)OO,是在大气化学的一个重要过程。 MVKO最近产生和1,3- diiodobut -2-烯,(CH 2 I)HC = C(CH 3)I,和O-2的气体混合物的光解后在实验室确定的,但其形成的机制仍然未知。我们合成了纯的(Z) - 和(E)-1,3-二碘 - ​​丁-2-烯并且测量了它们的不同的IR光谱。当在的(Z)280nm处的照射 - 和(E)在3.3 K,终端CI债收益率的裂变(Z)-1,3-二碘丁-2-烯的固体的pH 2 - 和(E )-3-碘 - 丁-2-烯-1-基[(C2H3C)-C-中心点(CH 3)I]分别自由基,。这些基团物在2962.4 1423.8 1265.3表征红外线吸收线,,,1120.9 / 1127.0,921.4 / 922.3和792.5 /791.7厘米(-1),和16条附加弱线(Z) - (C2H3C)-C-中心点(CH 3)I和1405.2,1208.2,1106.0 / 1103.9,934.2 / 933.4和785.1 /784.9厘米(-1)以及另外5分较弱的为(E) - (C2H3C)-C-中心点(CH 3)余。所述分配是根据关于次级光解和振动波数的比较和与那些与B2PLYP-D3 / AUG-CC-pVTZ-PP的方法计算观察到线的IR强度行为的。这些观察结果证实,只有终端I原子,而不是中央的一个,在280nm处photodissociated,并且在固体对 - H-2,多余的能量光解诱导的构象没有变化之后。这些中心点C2H3C的新谱(CH3)予基团可以为形成克里奇中间体MVKO的从(CH 2 I)的光解源反应机制的理解HC = C(CH3)我在O-2中提供有价值的信息实验室。

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