Research paperTheoreticalWetting and Strain Engineering of 2D Materials on Nanopatterned SubstratesDavoud Adinehloo, Joshua R. Hendrickson, Vasili Perebeinos2023·10.1039/D3NA01079A·arXiv:2311.13399AbstractWe investigate wetting/dewetting transitions and strain engineering in 2D materials placed on nanopatterned substrates, including two-dimensional rounded nanopillar arrays and one-dimensional rectangular gratings. Using a continuum mechanical framework with strain, bending, and van der Waals adhesion contributions, we identify critical geometric conditions for detachment and hysteresis behavior and discuss implications for strain localization in atomically thin materials.Read more
Monolayer graphene modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedCStudied MaterialExpand
Monolayer MoS₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoS₂Studied MaterialExpand
Monolayer MoSe₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoSe₂Studied MaterialExpand
Monolayer h-BN modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedh-BNStudied MaterialExpand
Research paperTheoreticalWetting and Strain Engineering of 2D Materials on Nanopatterned SubstratesDavoud Adinehloo, Joshua R. Hendrickson, Vasili Perebeinos2023·10.1039/D3NA01079A·arXiv:2311.13399AbstractWe investigate wetting/dewetting transitions and strain engineering in 2D materials placed on nanopatterned substrates, including two-dimensional rounded nanopillar arrays and one-dimensional rectangular gratings. Using a continuum mechanical framework with strain, bending, and van der Waals adhesion contributions, we identify critical geometric conditions for detachment and hysteresis behavior and discuss implications for strain localization in atomically thin materials.Read more
Monolayer graphene modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedCStudied MaterialExpand
Monolayer MoS₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoS₂Studied MaterialExpand
Monolayer MoSe₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoSe₂Studied MaterialExpand
Monolayer h-BN modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedh-BNStudied MaterialExpand
Research paperTheoreticalWetting and Strain Engineering of 2D Materials on Nanopatterned SubstratesDavoud Adinehloo, Joshua R. Hendrickson, Vasili Perebeinos2023·10.1039/D3NA01079A·arXiv:2311.13399AbstractWe investigate wetting/dewetting transitions and strain engineering in 2D materials placed on nanopatterned substrates, including two-dimensional rounded nanopillar arrays and one-dimensional rectangular gratings. Using a continuum mechanical framework with strain, bending, and van der Waals adhesion contributions, we identify critical geometric conditions for detachment and hysteresis behavior and discuss implications for strain localization in atomically thin materials.Read more
Monolayer graphene modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedCStudied MaterialExpand
Monolayer MoS₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoS₂Studied MaterialExpand
Monolayer MoSe₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoSe₂Studied MaterialExpand
Monolayer h-BN modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedh-BNStudied MaterialExpand
Research paperTheoreticalWetting and Strain Engineering of 2D Materials on Nanopatterned SubstratesDavoud Adinehloo, Joshua R. Hendrickson, Vasili Perebeinos2023·10.1039/D3NA01079A·arXiv:2311.13399AbstractWe investigate wetting/dewetting transitions and strain engineering in 2D materials placed on nanopatterned substrates, including two-dimensional rounded nanopillar arrays and one-dimensional rectangular gratings. Using a continuum mechanical framework with strain, bending, and van der Waals adhesion contributions, we identify critical geometric conditions for detachment and hysteresis behavior and discuss implications for strain localization in atomically thin materials.Read more
Monolayer graphene modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedCStudied MaterialExpand
Monolayer MoS₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoS₂Studied MaterialExpand
Monolayer MoSe₂ modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedMoSe₂Studied MaterialExpand
Monolayer h-BN modeled on nanopatterned substrates in the continuum mechanical framework.No measurements recordedSimulatedh-BNStudied MaterialExpand