We present a route to non-destructive functionalization of graphene via assembly of vertical all-carbon van der Waals heterostructures. To this end, we employ singlelayer graphene (SLG) sheets grown by low-pressure methane CVD on Cu foils and large-area dielectric ~1 nm thick amino-terminated carbon nanomembranes (NH2-CNMs) generated by electron-beam-induced crosslinking of aromatic self-assembled monolayers. We encapsulate SLG sheets on oxidized silicon wafers with NH2-CNMs via mechanical stacking and characterize structural, chemical and electronic properties of the formed heterostructures by Raman spectroscopy and X-ray photoelectron spectroscopy as well as by electric and electromagnetic transport measurements. We show that functional amino groups are brought in close vicinity of the SLG sheets and that their transport characteristics are not impaired by this functionalization; moreover, we demonstrate a functional response of the heterostructure devices to the protonation of the amino groups in water. Due to its relative simplicity, the suggested approach opens broad avenues for implementations in graphene-based electronic devices where non-destructive chemical functionalization of graphene is required (e.g., for engineering electrical transducers for chemical and bio-sensing) or as complementary dielectric to graphene in hieratical heterostructures.
翻译:我们通过垂直的全碳范德华气流结构组装,展示了不破坏石墨功能化的途径,为此,我们采用了单层石墨(SLG)板,在Cu fuils和大面积电离~1纳米厚厚的氨基隔热碳纳米材料堆(NH2-CNMS)上种植了低压甲烷CVD,在Cu fuils和大面积电磁光谱仪~1 nmmm厚的氨基隔热碳纳米材料(NH2-CNM)上种植了单层石墨(SLG),通过机械堆装配和描述Raman光谱和X光光光光光光光光光光光谱仪以及电磁传输测量,将氧化硅的氧化硅单体(NHH2-CNM)与NH2-CNMS-CNM(SLG)的氧化硅卷纸片薄纸板合在一起,我们展示了SLG(SLG)表纸质化结构设备与NH2-CNMS,通过机械堆叠合体结构,并描述成结构结构结构结构结构结构结构结构结构结构结构结构结构结构结构结构结构结构结构结构、化学结构结构结构结构结构结构结构结构结构结构,在Ramanmanman-光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光光谱和电路光光光光光光光光光光光光光光光光光光光光光光光光光光光谱化测量测量测量测量测量测量测量测量的构造的构造学测量测量测量测量测量测量测量测量,我们建议,在地面化,在地面化中,在地面化,在地面化中,在地面化中,在地面化中,在地面化中,在地面化中,在地面化中,在地面化中进行上进行上进行上进行上,在地面化学上进行。