SPIN-ORBIT COUPLING AND RADIATIONLESS TRANSITIONS IN AROMATIC KETONES

被引:130
作者
DYM, S
HOCHSTRASSER, RM
机构
[1] Department of Chemistry, Laboratory for Research on the Structure of Matter, University of Pennsylvania, Philadelphia
关键词
D O I
10.1063/1.1672367
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The spin-orbital coupling mechanism for 3nπ;*←1A was investigated for several substituted benzophenones by use of polarized absorption spectra and high-field Zeeman studies and was found to be consistent with the scheme already determined for benzophenone itself [S. Dym, R. M. Hochstrasser, and M. Schafer, J. Chem. Phys. 48, 646 (1968)]. Spin-polarization experiments on an throne in n-heptane at 4.2 and 2°K and benzophenone in pyridine at 2°K showed that excitation into the singlet resulted in the population of the predominantly active spin state, 〈| Tz〉. Examination of low-temperature absorption spectra of a variety of acetophenones and benzophenones revealed band broadening within the triplet manifold, suggesting the presence of higher triplets in many cases. No such evidence for a higher triplet state below the singlet origin could be detected in the spectra of benzophenone and perdeuterobenzophenone. The difference in linewidths for the triplet and singlet origins of benzophenone was measured and interpreted as uncertainty broadening due to strong intersystem mixing; the rate of this process was calculated to be about 1011 sec-1. Additional broadening of the 1nπ;* 0-1 carbonyl stretching band was observed and attributed to vibrational relaxation and an increased rate of intersystem crossing from this level. The use of C 2v symmetry labels as an appropriate basis for discussion of aromatic carbonyl transitions is discussed. Finally a mechanism for intersystem crossing in aromatic ketones is given involving direct coupling of modified 1nπ* and 3nπ* states.
引用
收藏
页码:2458 / +
页数:1
相关论文
共 122 条
[21]   RESONANCE AND CONJUGATION .2. FACTORS DETERMINING BOND LENGTHS AND HEATS OF FORMATION [J].
DEWAR, MJS ;
SCHMEISING, HN .
TETRAHEDRON, 1960, 11 (1-2) :96-120
[22]  
DICK BG, 1965, LATTICE DYNAMICS, P159
[23]   ASSIGNMENT OF LOWEST TRIPLET STATE OF CARBONYL GROUP [J].
DYM, S ;
HOCHSTRASSER, RM ;
SCHAFER, M .
JOURNAL OF CHEMICAL PHYSICS, 1968, 48 (02) :646-+
[24]   ELASTIC CONSTANTS OF SILICON CARBIDE [J].
EINSPRUCH, NG ;
CLAIBORNE, LT .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1963, 35 (06) :925-&
[25]   CRYSTALLINE FORMS OF CARBON - A POSSIBLE HEXAGONAL POLYMORPH OF DIAMOND [J].
ERGUN, S ;
ALEXANDER, LE .
NATURE, 1962, 195 (4843) :765-&
[26]   PHONON DISPERSION CURVES BY RAMAN SCATTERING IN SIC POLYTYPES 3C,4H,6H,15R,AND 21R [J].
FELDMAN, DW ;
PARKER, JH ;
CHOYKE, WJ ;
PATRICK, L .
PHYSICAL REVIEW, 1968, 173 (03) :787-&
[27]   RAMAN SCATTERING IN 6H SIC [J].
FELDMAN, DW ;
PARKER, JH ;
CHOYKE, WJ ;
PATRICK, L .
PHYSICAL REVIEW, 1968, 170 (03) :698-&
[28]  
FINK WH, 1966, J CHEM PHYS, V46, P2593
[29]  
FRANK FC, 1951, PHILOS MAG, V42, P1014
[30]  
FRANK FC, 1950, PHILOS MAG, V41, P1287