Babunts Roman A, Uspenskaya Yulia A, Romanov Nikolai G, Orlinskii Sergei B, Mamin Georgy V, Shornikova Elena V, Yakovlev Dmitri R, Bayer Manfred, Isik Furkan, Shendre Sushant, Delikanli Savas, Demir Hilmi Volkan, Baranov Pavel G
Ioffe Institute, Russian Academy of Sciences, 194021 St. Petersburg, Russia.
Kazan Federal University, Institute of Physics, 420008 Kazan, Russia.
ACS Nano. 2023 Mar 14;17(5):4474-4482. doi: 10.1021/acsnano.2c10123. Epub 2023 Feb 20.
Semiconductor colloidal nanoplatelets based of CdSe have excellent optical properties. Their magneto-optical and spin-dependent properties can be greatly modified by implementing magnetic Mn ions, using concepts well established for diluted magnetic semiconductors. A variety of magnetic resonance techniques based on high-frequency (94 GHz) electron paramagnetic resonance in continuous wave and pulsed mode were used to get detailed information on the spin structure and spin dynamics of Mn ions in core/shell CdSe/(Cd,Mn)S nanoplatelets. We observed two sets of resonances assigned to the Mn ions inside the shell and at the nanoplatelet surface. The surface Mn demonstrates a considerably longer spin dynamics than the inner Mn due to lower amount of surrounding Mn ions. The interaction between surface Mn ions and H nuclei belonging to oleic acid ligands is measured by means of electron nuclear double resonance. This allowed us to estimate the distances between the Mn ions and H nuclei, which equal to 0.31 ± 0.04, 0.44 ± 0.09, and more than 0.53 nm. This study shows that the Mn ions can serve as atomic-size probes for studying the ligand attachment to the nanoplatelet surface.
基于CdSe的半导体胶体纳米片具有优异的光学性质。利用在稀磁半导体中已确立的概念,通过引入磁性Mn离子,可以极大地改变它们的磁光和自旋相关性质。基于连续波和脉冲模式下的高频(94 GHz)电子顺磁共振的多种磁共振技术,被用于获取有关核/壳结构的CdSe/(Cd,Mn)S纳米片中Mn离子的自旋结构和自旋动力学的详细信息。我们观察到两组共振,分别对应于壳层内和纳米片表面的Mn离子。由于周围Mn离子数量较少,表面Mn的自旋动力学比内部Mn长得多。通过电子核双共振测量表面Mn离子与属于油酸配体的H核之间的相互作用。这使我们能够估计Mn离子与H核之间的距离,其分别为0.31±0.04、0.44±0.09和大于0.53 nm。这项研究表明,Mn离子可作为原子尺寸的探针,用于研究配体与纳米片表面的附着情况。