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Journal article

Graphene-Si CMOS oscillators

In Nanoscale 2019, Volume 11, Issue 8, pp. 3619-3625
From

Politecnico di Milano1

Center for Nanostructured Graphene, Centers, Technical University of Denmark2

Department of Physics, Technical University of Denmark3

Graphene field-effect transistors (GFETs) offer a possibility of exploiting unique physical properties of graphene in realizing novel electronic circuits. However, graphene circuits often lack the voltage swing and switchability of Si complementary metal-oxide-semiconductor (CMOS) circuits, which are the main building block of modern electronics.

Here we introduce graphene in Si CMOS circuits to exploit favorable electronic properties of both technologies and realize a new class of simple oscillators using only a GFET, Si CMOS D latch, and timing RC circuit. The operation of the two types of realized oscillators is based on the ambipolarity of graphene, i.e., the symmetry of the transfer curve of GFETs around the Dirac point.

The ambipolarity of graphene also allowed to turn the oscillators into pulse-width modulators (with a duty cycle ratio ∼1 : 4) and voltage-controlled oscillators (with a frequency ratio ∼1 : 8) without any circuit modifications. The oscillation frequency was in the range from 4 kHz to 4 MHz and limited only by the external circuit connections, rather than components themselves.

The demonstrated graphene-Si CMOS hybrid circuits pave the way to the more widespread adoption of graphene in electronics.

Language: English
Year: 2019
Pages: 3619-3625
ISSN: 20403372 and 20403364
Types: Journal article
DOI: 10.1039/c8nr07862a
ORCIDs: Booth, Timothy J , Bøggild, Peter , 0000-0002-5965-3570 , 0000-0002-8212-1337 and 0000-0001-7373-0643

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