© 2020 American Chemical Society. Interfacial effects on single-layer graphene (SLG) or multilayer graphene (MLG) properties greatly affect device performance. Thus, the effect of the interface on the temperature coefficient of resistance (TCR) on SLG and MLG due to surface-deposited core-shell metallic nanoparticles (MNPs) and various substrates was experimentally investigated. Observed substrates included glass, SiO2, and Si3N4. We show that these modifications can be used to strongly influence SLG interface effects, thus increasing the TCR up to a 0.456% per K resistance change when in contact with the SiO2 substrate at the bottom surface and MNPs on the top surface. However, these surface interactions are muted in MLG due to the screeni...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Bilayer graphene (BLG) has been shown to have advantageous electronic and physical properties relati...
International audienceWhile graphene and few layer graphene (FLG) are considered as having the highe...
We report on experimental investigation of thermal contact resistance, RC, of the noncuring graphene...
In the first part of this thesis, I present the results of my investigation of thermal characteristi...
Correlation of surface morphology alteration in affecting the nanotribological properties of multila...
The thermal conductivity (kappa) of graphene dramatically decreases once supported on a substrate, h...
We have investigated interfacial thermal resistance (ITR) between single-layer graphene and Cu subst...
Thermal transport in low dimensional materials play a critical role in the functionality and reliabi...
We report the study of electrical transport in few-layered CVD-graphene located on nanostructured su...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
The mechanical performance and surface friction of graphene oxide (GO) were found to inversely depen...
International audienceThe inter-layer resistance in few layer graphene (FLG) is an unknown intrinsic...
We report a systematic study of the total contact resistance present at the interface between a meta...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Bilayer graphene (BLG) has been shown to have advantageous electronic and physical properties relati...
International audienceWhile graphene and few layer graphene (FLG) are considered as having the highe...
We report on experimental investigation of thermal contact resistance, RC, of the noncuring graphene...
In the first part of this thesis, I present the results of my investigation of thermal characteristi...
Correlation of surface morphology alteration in affecting the nanotribological properties of multila...
The thermal conductivity (kappa) of graphene dramatically decreases once supported on a substrate, h...
We have investigated interfacial thermal resistance (ITR) between single-layer graphene and Cu subst...
Thermal transport in low dimensional materials play a critical role in the functionality and reliabi...
We report the study of electrical transport in few-layered CVD-graphene located on nanostructured su...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
The mechanical performance and surface friction of graphene oxide (GO) were found to inversely depen...
International audienceThe inter-layer resistance in few layer graphene (FLG) is an unknown intrinsic...
We report a systematic study of the total contact resistance present at the interface between a meta...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Bilayer graphene (BLG) has been shown to have advantageous electronic and physical properties relati...