Manoj Talluri, Kotha Srinu, Paikaray Bibekananda, Srideep Dasari, Haldar Arabinda, Rao Kotagiri Venkata, Murapaka Chandrasekhar
Department of Materials Science and Metallurgical Engineering, Indian Institute of Technology Hyderabad Kandi-502285 Telangana India
Department of Chemistry, Indian Institute of Technology Hyderabad Kandi-502285 Telangana India
RSC Adv. 2021 Nov 3;11(56):35567-35574. doi: 10.1039/d1ra07349d. eCollection 2021 Oct 28.
Pure spin current based devices have attracted great interest in recent days. Spin current injection into non-magnetic materials is essential for the design and development of such pure spin current based devices. In this context, organic semiconductors (OSCs) can be potential non-magnetic materials over widely explored heavy metals. This is due to the relatively low spin-orbit coupling of OSCs, which is essential to host the spin current with a large spin diffusion length and long spin-relaxation time. This research work demonstrates the harvesting of spin currents at the perylene diimide (PDI)/permalloy (Py) based OSC interface. The observed high linewidth broadening of 2.18 mT from the ferromagnetic resonance spectra indicates the presence of giant spin pumping from Py to PDI. The resultant spin-mixing conductance, 1.54 × 10 m quantifies the amount of spin current injected from Py to PDI, which is in a similar range to ferromagnet/heavy metals.
近年来,基于纯自旋流的器件引起了人们极大的兴趣。将自旋流注入非磁性材料对于此类基于纯自旋流的器件的设计和开发至关重要。在这种情况下,有机半导体(OSC)相对于广泛研究的重金属而言,可能是潜在的非磁性材料。这是由于有机半导体的自旋 - 轨道耦合相对较低,这对于承载具有大自旋扩散长度和长自旋弛豫时间的自旋流至关重要。这项研究工作展示了在基于苝二酰亚胺(PDI)/坡莫合金(Py)的有机半导体界面处收集自旋流。从铁磁共振光谱中观察到的高达2.18 mT的高线宽展宽表明存在从Py到PDI的巨自旋泵浦。由此产生的自旋混合电导1.54×10量化了从Py注入到PDI的自旋流的量,这与铁磁体/重金属的范围相似。