Jayasooriya Upali A, Grinter Roger, Hubbard Penny L, Aston Georgina M, Stride John A, Hopkins Gareth A, Camus Laure, Reid Ivan D, Cottrell Stephen P, Cox Stephen F J
School of Chemical Sciences and Pharmacy, University of East Anglia, Norwich NR4 7TJ, UK.
Chemistry. 2007;13(8):2266-76. doi: 10.1002/chem.200600853.
Muon Spin Relaxation and Avoided Level Crossing (ALC) measurements of ferrocene are reported. The main features observed are five high field resonances in the ALC spectrum at about 3.26, 2.44, 2.04, 1.19 and 1.17 T, for the low-temperature phase at 18 K. The high-temperature phase at 295 K shows that only the last feature shifted down to about 0.49 T and a muon spin relaxation peak at about 0.106 T which approaches zero field when reaching the phase transition temperature of 164 K. A model involving three muoniated radicals, two with muonium addition to the cyclopentadienyl ring and the other to the metal atom, is postulated to rationalise these observations. A theoretical treatment involving spin-orbit coupling is found to be required to understand the Fe-Mu adduct, where an interesting interplay between the ferrocene ring dynamics and the spin-orbit coupling of the unpaired electron is shown to be important. The limiting temperature above which the full effect of spin-orbit interaction is observable in the muSR spectra of ferrocene was estimated to be 584 K. Correlation time for the ring rotation dynamics of the Fe-Mu radical at this temperature is 3.2 ps. Estimated electron g values and the changes in zero-field splittings for this temperature range are also reported.
报道了二茂铁的μ子自旋弛豫和避免能级交叉(ALC)测量结果。在18 K的低温相中,ALC谱中观察到的主要特征是在约3.26、2.44、2.04、1.19和1.17 T处有五个高场共振。在295 K的高温相中,仅最后一个特征下移至约0.49 T,并且在约0.106 T处有一个μ子自旋弛豫峰,当达到164 K的相变温度时该峰接近零场。假设了一个涉及三个含μ子自由基的模型,其中两个是μ子加到环戊二烯基环上,另一个加到金属原子上,以解释这些观察结果。发现需要进行涉及自旋 - 轨道耦合的理论处理来理解Fe - Mu加合物,其中二茂铁环动力学与未配对电子的自旋 - 轨道耦合之间有趣的相互作用被证明是重要的。估计在二茂铁的μSR谱中可观察到自旋 - 轨道相互作用的全部效应的极限温度为584 K。在此温度下Fe - Mu自由基环旋转动力学的相关时间为3.2 ps。还报道了该温度范围内估计的电子g值和零场分裂的变化。