We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silicon Schottky diode. The device exhibits a reverse-bias photocurrent exceeding the forward current and achieves a photoresponsivity as high as 2.5 A / W . We show that the enhanced photocurrent is due to photo-generated carriers injected in the graphene/Si junction from the parasitic graphene/SiO2/Si capacitor connected in parallel to the diode. The same mechanism can occur with thermally generated carriers, which contribute to the high leakage current often observed in graphene/Si junctions
We characterized a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We characterized a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
We characterized a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We study the effect of temperature and light on the I-V and C-V characteristics of a graphene/silico...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We propose a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel with ...
We characterized a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
We characterized a hybrid device consisting of a graphene/silicon (Gr/Si) Schottky diode in parallel...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...
The Graphene/Silicon (Gr/Si) junction can function as a Schottky diode with performances strictly re...