We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphene using electric double-layer transistors to continuously tune the carrier density up to values exceeding 10(14) cm(-2). Whereas in monolayer the conductivity saturates, in bi- and trilayer filling of the higher-energy bands is observed to cause a nonmonotonic behavior of the conductivity and a large increase in the quantum capacitance. These systematic trends not only show how the intrinsic high-density transport properties of graphene can be accessed by field effect, but also demonstrate the robustness of ion-gated graphene, which is crucial for possible future applications
Quantum capacitance of electrolyte-gated bilayer graphene field-effect transistors is investigated i...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
We fabricate electric double-layer field-effect transistor (EDL-FET) devices on mechanically exfolia...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
Abstract Since the advent of graphene, a variety of studies have been performed to elucidate its fun...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
Since the advent of graphene, a variety of studies have been performed to elucidate its fundamental ...
This thesis describes electronic transport experiments in graphene from the hopping to the ballistic...
Since the advent of graphene, a variety of studies have been performed to elucidate its fundamental ...
Since the advent of graphene, a variety of studies have been performed to elucidate its fundamental ...
Quantum capacitance of electrolyte-gated bilayer graphene field-effect transistors is investigated i...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
We fabricate electric double-layer field-effect transistor (EDL-FET) devices on mechanically exfolia...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
We present a comparative study of high carrier density transport in mono-, bi-, and trilayer graphen...
Abstract Since the advent of graphene, a variety of studies have been performed to elucidate its fun...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
Since the advent of graphene, a variety of studies have been performed to elucidate its fundamental ...
This thesis describes electronic transport experiments in graphene from the hopping to the ballistic...
Since the advent of graphene, a variety of studies have been performed to elucidate its fundamental ...
Since the advent of graphene, a variety of studies have been performed to elucidate its fundamental ...
Quantum capacitance of electrolyte-gated bilayer graphene field-effect transistors is investigated i...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
We fabricate electric double-layer field-effect transistor (EDL-FET) devices on mechanically exfolia...