DIRECT INFRARED SPECTROSCOPIC EVIDENCE OF ALLYL RADICAL AND DEFINITION OF THE INITIATION STEP IN THERMAL-DECOMPOSITION OF CYCLOALKANES - A COMPARISON WITH VERY LOW-PRESSURE PYROLYSIS OF ALKENES

被引:14
作者
GUSELNIKOV, LE [1 ]
VOLKOVA, VV [1 ]
IVANOV, PE [1 ]
INYUSHKIN, SV [1 ]
SHEVELKOVA, LV [1 ]
ZIMMERMANN, G [1 ]
ZIEGLER, U [1 ]
ONDRUSCHKA, B [1 ]
机构
[1] CENT INST ORGAN CHEM,DEPT BASIC ORGAN MAT,O-7050 LEIPZIG,GERMANY
关键词
1-ALKENES; CRYOCHEMISTRY; CYCLOALKANES; INFRARED SPECTROSCOPY; LOW TEMPERATURE MATRIX ISOLATION; PYROLYSIS; REACTION MECHANISM; THERMAL STABILITY;
D O I
10.1016/0165-2370(91)80016-2
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The very low pressure pyrolysis (VLPP) of both C4-C8 cycloalkanes and their corresponding isomeric 1-alkenes as well as 2-heptene (750-950-degrees-C, 10(-3) s, 10(-2)-10(-3) Torr) was studied using the low temperature matrix infrared spectroscopy method (LTM/IR) to identify radicals and to evaluate reactions responsible for their generation. Apart from the pyrolysate of cyclobutane the reaction products of all other cycloalkanes exhibit absorption bands in the spectra due to the allyl radical (518, 808 and 985 cm-1) besides those of ethene, propene and the isomeric 1-alkenes. Moreover, in the case of cyclohexane the methyl radical and in the case of cyclopentane and of cycloheptane the ethyl radical were identified amongst cyclopropane and cyclopentane, respectively. The VLPP/LTM/IR spectra of 1-alkenes on their part show absorption bands due to both allyl and methyl (from C4H8, C6H12, C8H16) or ethyl (from C5H10, C7H14) radicals. These results are considered to be direct evidence of the initiation step of the conventional radical chain process of cycloalkanes pyrolysis consisting in the generation of radicals from isomeric 1-alkenes which are considered primary products of the unimolecular thermal 1-alkenes conversion.
引用
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页码:79 / 93
页数:15
相关论文
共 33 条
[1]   DIRECT OBSERVATION AND CHEMISTRY OF BIRADICALS FROM PHOTOCHEMICAL DECARBONYLATION OF ALPHA-PERPHENYLATED CYCLOALKANONES [J].
BARTON, DHR ;
CHARPIOT, B ;
INGOLD, KU ;
JOHNSTON, LJ ;
MOTHERWELL, WB ;
SCAIANO, JC ;
STANFORTH, S .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (12) :3607-3611
[2]  
BENSON SW, 1976, THERMOCHEMICAL KINET, P73
[3]   KINETICS OF PRIMARY PROCESSES IN THE PYROLYSIS OF CYCLOPENTANES AND CYCLOHEXANES [J].
BROWN, TC ;
KING, KD ;
NGUYEN, TT .
JOURNAL OF PHYSICAL CHEMISTRY, 1986, 90 (03) :419-424
[4]  
CHARLES TG, 1953, J AM CHEM SOC, V75, P6196
[5]   THERMOLYSIS OF CIS-1,2-DIDEUTERIOCYLOBUTANE AND TRANS-1,2-DIDEUTERIOCYCLOBUTANE [J].
CHICKOS, JS .
JOURNAL OF ORGANIC CHEMISTRY, 1979, 44 (05) :780-784
[6]  
ENGELSTADTER U, 1988, Z CHEM, V28, P251
[7]   VERY LOW-PRESSURE PYROLYSIS (VLPP) OF MONOSILACYCLOBUTANES - INFRARED ABSORPTIONS OF 1,1-DIMETHYL-1-SILAETHYLENE, (CH3)2SI=CH2, AND 1,1-DIDEUTERIOMETHYL-1-SILAETHYLENE, (CD3)2SI=CH2 ISOLATED IN ARGON MATRICES [J].
GUSELNIKOV, LE ;
VOLKOVA, VV ;
AVAKYAN, VG ;
NAMETKIN, NS .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1980, 201 (01) :137-150
[8]  
GUSELNIKOV LE, 1985, DOKL AKAD NAUK SSSR+, V282, P1416
[9]  
GUSELNIKOV LE, 1988, 6TH PETR S SOC COUNT
[10]  
GUSELNIKOV LE, 1987, IZV AKAD NAUK SSSR K, P2640