Meta-benzene bridges in nanoporous graphene suppress inter-channel current leakage via destructive quantum interference, confining injected currents to a single 0.7 nm wide channel for over 100 nm.
Complex Absorbing Potential Based Lorentzian Fitting Scheme and Time Dependent Quantum Transport
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Quantum interference engineering of nanoporous graphene for carbon nanocircuitry
Meta-benzene bridges in nanoporous graphene suppress inter-channel current leakage via destructive quantum interference, confining injected currents to a single 0.7 nm wide channel for over 100 nm.