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3C-SiC Nanobeam Optomechanical Crystals

  • Read more about 3C-SiC Nanobeam Optomechanical Crystals

TWO-DIMENSIONAL MoS2 NANOMECHANICAL RESONATORS FREELY-SUSPENDED ON MICROTRENCHES ON FLEXIBLE SUBSTRATE

  • Read more about TWO-DIMENSIONAL MoS2 NANOMECHANICAL RESONATORS FREELY-SUSPENDED ON MICROTRENCHES ON FLEXIBLE SUBSTRATE

TOWARDS REAL-TIME METHANE (CH4) CAPTURE AND DETECTION BY NANOPARTICLE-ENHANCED SILICON CARBIDE TRAMPOLINE OSCILLATORS

  • Read more about TOWARDS REAL-TIME METHANE (CH4) CAPTURE AND DETECTION BY NANOPARTICLE-ENHANCED SILICON CARBIDE TRAMPOLINE OSCILLATORS

Scanning electron microscopy characterization of structural features in suspended and non-suspended graphene by customized CVD growth

  • Read more about Scanning electron microscopy characterization of structural features in suspended and non-suspended graphene by customized CVD growth

Probing contact-mode characteristics of silicon nanowire electromechanical systems with embedded piezoresistive transducers

  • Read more about Probing contact-mode characteristics of silicon nanowire electromechanical systems with embedded piezoresistive transducers

Observation of Strong Temperature Hysteresis in Molybdenum Disulfide (MoS2) Vibrating Nanomechanical Resonators

  • Read more about Observation of Strong Temperature Hysteresis in Molybdenum Disulfide (MoS2) Vibrating Nanomechanical Resonators

NEMS Switches: Opportunities and Challenges in Emerging IC Technologies

  • Read more about NEMS Switches: Opportunities and Challenges in Emerging IC Technologies

Multimode SiC Trampoline Resonators Manipulate Microspheres to Create Chladni Figures

  • Read more about Multimode SiC Trampoline Resonators Manipulate Microspheres to Create Chladni Figures

MOLYBDENUM DISULFIDE (MoS2) NANOMECHANICAL RESONATORS INTEGRATED ON MICROCHANNELS

  • Read more about MOLYBDENUM DISULFIDE (MoS2) NANOMECHANICAL RESONATORS INTEGRATED ON MICROCHANNELS

High frequency torsional-mode nanomechanical resonators enabled by very thin nanocrystalline diamond diaphragms

  • Read more about High frequency torsional-mode nanomechanical resonators enabled by very thin nanocrystalline diamond diaphragms

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Case School of Engineering
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