Kandrashkin Yuri E, Zaripov Ruslan B
Zavoisky Physical-Technical Institute, FRC Kazan Scientific Center of Russian Academy of Sciences, Kazan 420029, Russia.
Phys Chem Chem Phys. 2023 Nov 22;25(45):31493-31499. doi: 10.1039/d3cp04335e.
The spin decoherence of the scandium bimetal in Sc@C(CHPh) is studied at low temperatures (20-120 K) by the electron spin echo technique. The correlation between the magnetic quantum number of the total spin state of the scandium nuclei and the decay rates is established. For the total spin = 5, a decrease of the phase relaxation time by a factor of two is observed by changing the transition from = -1 to = +1 and = -3 at 120 K. The observed results are rationalized in the framework of the rotational diffusion of the endohedral fragment in the fullerene cage. It is found that the characteristic rotation time is of the order of a microsecond at 100 K and increases at lower temperatures.
通过电子自旋回波技术,在低温(20 - 120K)下研究了Sc@C(CHPh)中钪双金属的自旋退相干。建立了钪核总自旋态的磁量子数与衰减率之间的相关性。对于总自旋S = 5,在120K时,通过改变从S = -1到S = +1以及从S = -3的跃迁,观察到相位弛豫时间减少了一半。在富勒烯笼中内包合物片段的旋转扩散框架内,对观察结果进行了合理的解释。发现在100K时,特征旋转时间约为微秒量级,并且在较低温度下增加。