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Showing 1 to 9 of 9 for “"self-rolled-up"”.

  1. Strain-induced self-rolled-up semiconductor micro/nanotubes: Fabrication and characterization

    Strain-induced self-rolled-up semiconductor nanotubes are a new type of building block for three-dimensional architectures. Semiconductor nanotubes (SNTs) take advantage of the lattice mismatch between different layers and are formed when the strained semiconductor layers are released from the …

    uiuc Repository record for Strain-induced self-rolled-up semiconductor micro/nanotubes: Fabrication and characterization (opens in a new tab)

  2. Self-rolled-up microtube technology for cellular outgrowth guidance and monitoring

    The evolution and optimization of self-rolled-up membranes (s-RuM) has been taking place over the past two decades at a fervent pace. This progress has culminated in a rolled-up structure that is not only insulating, but transparent and biocompatible, allowing it to be integrated into conductance, …

    uiuc Repository record for Self-rolled-up microtube technology for cellular outgrowth guidance and monitoring (opens in a new tab)

  3. On-chip self-rolled-up nanomembrane tube inductor for RFIC performance enhancement

    … substrate effects. A new design concept based on self-rolled-up nanomembrane nanotechnology that “processes like 2D and functions like 3D” is proposed and demonstrated. This thesis shows a global solution to obtain a lumped inductor with extremely small on-chip footprint and immunity to substrate …

    uiuc Repository record for On-chip self-rolled-up nanomembrane tube inductor for RFIC performance enhancement (opens in a new tab)

  4. Biocompatible silicon nitride thin films for self-rolled-up microtube technologies: guiding neurons

    … presents the evolution and optimization of a self-rolled-up membrane (s-RUM) that is not only insulating, but transparent and biocompatible, allowing it to be integrated into conductance, photonics, and strain-based sensor systems. These microtube-forming membranes are easily fabricated and …

    uiuc Repository record for Biocompatible silicon nitride thin films for self-rolled-up microtube technologies: guiding neurons (opens in a new tab)

  5. Application of self-rolled-up membrane technology for enhanced neuron guidance and alignment

    … functions throughout the human body. Disruption of neural circuits, through neurodegenerative diseases such as Parkinson’s disease or multiple sclerosis, as well as sensory neuropathies, and traumatic injuries can be incredibly debilitating. Neurological deficits have been identified as …

    uiuc Repository record for Application of self-rolled-up membrane technology for enhanced neuron guidance and alignment (opens in a new tab)

  6. Self-rolled-up membrane (S-RuM) capacitors and filters for radio frequency communication

    Self-rolled-up membrane (S-RuM) is a novel technology to build precisely controllable three- dimensional (3D) micro-structures. This technology finds wide applications in passive electronics, photonics, and neural interfaces, and achieves great device size reduction and performance enhancement. For …

    uiuc Repository record for Self-rolled-up membrane (S-RuM) capacitors and filters for radio frequency communication (opens in a new tab)

  7. Self-rolled-up microtubes for on-chip microfluidic DNA storage and passive electronics applications

    Submission published under a 24 month embargo labeled 'Closed Access', the embargo will last until 2025-08-01

    uiuc Repository record for Self-rolled-up microtubes for on-chip microfluidic DNA storage and passive electronics applications (opens in a new tab)

  8. Chip scale monolithic integration of inductive and capacitive components by self-rolled-up membrane nanotechnology

    … which combines inductive (L) and capacitive (C) self-rolled-up membrane (S-RuM) components monolithically into a single L-C network structure, thereby greatly reducing the on-chip area footprint. The individual L-C elements are fabricated in-plane using standard semiconductor processing …

    uiuc Repository record for Chip scale monolithic integration of inductive and capacitive components by self-rolled-up membrane nanotechnology (opens in a new tab)

  9. Miniaturization of on-chip passive electronic devices by silicon nitride self-rolled-up membrane microtube nanotechnology

    … lumped elements. A new design platform based on self-rolled-up membrane (S-RuM) nanotechnology that “processes like 2-D and functions like 3-D” is proposed for constructing on-chip three-dimensional (3-D) rolled-up microtube structures. By taking lumped inductors and transformers, this thesis …

    uiuc Repository record for Miniaturization of on-chip passive electronic devices by silicon nitride self-rolled-up membrane microtube nanotechnology (opens in a new tab)