Weis V, Mobius K, Prisner T
Institut fur Experimentalphysik, Freie Universitat Berlin, Arnimallee 14, Berlin, 14 195, Germany.
J Magn Reson. 1998 Mar;131(1):17-24. doi: 10.1006/jmre.1997.1340.
Electron spin echo envelope modulation (ESEEM) has been studied at zero and low magnetic fields (B </= 100 G) by means of optically detected magnetic resonance. Qualitative differences of the ESEEM effect for an electronic triplet state (S = 1) under low-field and high-field conditions are observed and discussed. They are related to the different properties of the total spin angular momentum operator S and the hyperfine interaction at zero and high magnetic field. The novel method was applied to the photoexcited triplet state of acridine-d9 in a fluorene-h10 matrix. An analysis of the observed nitrogen quadrupole splitting is done by a quantitative description of the ESEEM effect in zero field. Copyright 1998 Academic Press.
通过光探测磁共振技术,在零磁场和低磁场(B≤100 G)条件下对电子自旋回波包络调制(ESEEM)进行了研究。观察并讨论了低场和高场条件下电子三重态(S = 1)的ESEEM效应的定性差异。它们与总自旋角动量算符S在零磁场和高磁场下的不同性质以及超精细相互作用有关。该新方法应用于芴 - h10基质中吖啶 - d9的光激发三重态。通过对零场中ESEEM效应的定量描述,对观察到的氮四极分裂进行了分析。版权所有1998年学术出版社。