We demonstrate injection, transport and detection of spins in spin valve arrays patterned in both copper based chemical vapor deposition (Cu-CVD) synthesized wafer scale single layer (SLG) and bilayer graphene (BLG). We observe spin relaxation times comparable to those reported for exfoliated graphene samples demonstrating that CVD specific structural differences such as nano-ripples and grain boundaries do not limit spin transport in the present samples. Our observations make Cu-CVD graphene a promising material of choice for large scale spintronic applications.
翻译:我们展示了以铜为基础的化学蒸气沉积(Cu-CVD)合成的单层和双层石墨(BLG)模式的旋转阀阵列中的旋流的注入、运输和探测,我们观察到的旋转放松时间与所报告的脱落石墨样品的松动时间相比,表明碳二氧化物具体的结构差异,如纳米极和谷物边界,并不限制现有样品中的旋转迁移。我们的观测结果使Cu-CVD石墨成为大比例质子应用的有希望选择的材料。