C. Maden Et Al. , "A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface," Lubricants , vol.12, no.2, 2024
Maden, C. Et Al. 2024. A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface. Lubricants , vol.12, no.2 .
Maden, C., TOFFOLİ, H., & Toffoli, D., (2024). A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface. Lubricants , vol.12, no.2.
Maden, Cem, HANDE TOFFOLİ, And DANIELE TOFFOLI. "A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface," Lubricants , vol.12, no.2, 2024
Maden, Cem Et Al. "A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface." Lubricants , vol.12, no.2, 2024
Maden, C. TOFFOLİ, H. And Toffoli, D. (2024) . "A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface." Lubricants , vol.12, no.2.
@article{article, author={Cem Maden Et Al. }, title={A Classical Molecular Dynamics Study of the Effect of the Atomic Force Microscope Tip Shape, Size and Deformation on the Tribological Properties of the Graphene/Au(111) Interface}, journal={Lubricants}, year=2024}