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These results are negated due to high bias risk.
We will first address characteristics of graphene at high bias which are not specific to graphene nanoribbons, then we address GNRs at high bias specifically.
We also observe that heating effects in graphene at high bias are significant.
This result is analogous to the high bias results obtained CNTs.
In the limit of high bias, this transport picture changes, which we discuss later.
Here, we study its behaviour at high bias near and after electrical breakdown.
Several recent works [33 35] address the topic of heating in graphene at high bias.
No current was detected even if high bias voltage was applied.
However, high bias regime can also broaden the electrical images of wires.
Previously, the application of high bias voltage resulted in the sudden constriction of a graphene device.
Similar(1)
The dielectric properties of porous ULK/Cu interconnects designed for sub 65 nm nodes are degraded at high bias-stress.
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