Zhang X, Waitz R, Yang F, et al. Vibrational modes of ultrathin carbon nanomembrane mechanical resonators. Applied Physics Letters. 2015;106(6): 063107.We report measurements of vibrational mode shapes of mechanical resonators made from ultrathin carbon nanomembranes (CNMs) with a thickness of approximately 1 nm. CNMs are prepared from electron irradiation induced cross-linking of aromatic self-assembled monolayers and the variation of membrane thickness and/or density can be achieved by varying the precursor molecule. Single- and triple-layer freestanding CNMs were made by transferring them onto Si substrates with square/rectangular orifices. The vibration of the membrane was actuated by applying a sinusoidal voltage to a piezoelectric dis...
Freestanding carbon nanomembranes (CNMs) with a thickness between 0.6 and 1.7 nm were prepared from ...
Turchanin A, Gölzhäuser A. Carbon Nanomembranes. ADVANCED MATERIALS. 2016;28(29):6075-6103.Carbon na...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...
We report measurements of vibrational mode shapes of mechanical resonators made from ultrathin carbo...
International audienceA new process to reproducibly manufacture high frequency microresonators based...
International audienceA new process to reproducibly manufacture high frequency microresonators based...
International audienceA new process to reproducibly manufacture high frequency microresonators based...
We present an experimental study of the bending waves of freestanding Si3N4 nanomembranes using opti...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
We report on experimental demonstration of a new type of nanomechanical resonators based on very thi...
Zhang X, Neumann C, Angelova P, Beyer A, Gölzhäuser A. Tailoring the Mechanics of Ultrathin Carbon N...
Amorphous carbon in ultra-thin thicknesses shows amazing mechanical properties that make it particul...
Ultrathin carbon nanomembranes (CNMs) are two-dimensional materials (2DM) of a few nm thickness with...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
Freestanding carbon nanomembranes (CNMs) with a thickness between 0.6 and 1.7 nm were prepared from ...
Turchanin A, Gölzhäuser A. Carbon Nanomembranes. ADVANCED MATERIALS. 2016;28(29):6075-6103.Carbon na...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...
We report measurements of vibrational mode shapes of mechanical resonators made from ultrathin carbo...
International audienceA new process to reproducibly manufacture high frequency microresonators based...
International audienceA new process to reproducibly manufacture high frequency microresonators based...
International audienceA new process to reproducibly manufacture high frequency microresonators based...
We present an experimental study of the bending waves of freestanding Si3N4 nanomembranes using opti...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
We report on experimental demonstration of a new type of nanomechanical resonators based on very thi...
Zhang X, Neumann C, Angelova P, Beyer A, Gölzhäuser A. Tailoring the Mechanics of Ultrathin Carbon N...
Amorphous carbon in ultra-thin thicknesses shows amazing mechanical properties that make it particul...
Ultrathin carbon nanomembranes (CNMs) are two-dimensional materials (2DM) of a few nm thickness with...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
Freestanding carbon nanomembranes (CNMs) with a thickness between 0.6 and 1.7 nm were prepared from ...
Turchanin A, Gölzhäuser A. Carbon Nanomembranes. ADVANCED MATERIALS. 2016;28(29):6075-6103.Carbon na...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...