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Electronics and Electrical Engineering

D-Index
39
Citations
5621
World Ranking
4743
National Ranking
169

Overview

Niko Münzenrieder is affiliated with the Free University of Bozen-Bolzano in Italy and has a research focus primarily in the field of Engineering, with significant contributions to Electrical and Electronic Engineering and Biomedical Engineering. Their interdisciplinary work also intersects with Materials Chemistry, Polymers and Plastics, and Bioengineering.

Their recent scholarly output includes a number of publications covering various aspects of advanced material science and electronics. Some notable papers by Münzenrieder are:

  • Thin-film electronics on active substrates: review of materials, technologies and applications (2022, Journal of Physics D Applied Physics)
  • Fabricating and Assembling Acoustic Metamaterials and Phononic Crystals (2020, Advanced Engineering Materials)
  • Review of recent trends in flexible metal oxide thin-film transistors for analog applications (2020, Flexible and Printed Electronics)
  • Laser-Induced, Green and Biocompatible Paper-Based Devices for Circular Electronics (2023, Advanced Functional Materials)
  • Coco Stretch: Strain Sensors Based on Natural Coconut Oil and Carbon Black Filled Elastomers (2020, Advanced Materials Technologies)

Münzenrieder frequently collaborates with several co-authors, among whom are Giuseppe Cantarella, Federica Catania, Luisa Petti, Hugo de Souza Oliveira, and Dianne Corsino.

The primary publication venues where Münzenrieder's research appears include:

  • IEEE Transactions on Electron Devices
  • IEEE Journal on Flexible Electronics
  • Journal of Physics D Applied Physics
  • Advanced Materials Technologies
  • Advanced Electronic Materials

Their research topics span multiple advanced areas such as:

  • Advanced Sensor and Energy Harvesting Materials
  • Thin-Film Transistor Technologies
  • ZnO doping and properties
  • Gas Sensing Nanomaterials and Sensors
  • Analytical Chemistry and Sensors
  • Electrical and Thermal Properties of Materials
  • Conducting polymers and applications

Best Publications

  • Metal oxide semiconductor thin-film transistors for flexible electronics

    Luisa Petti;Niko Münzenrieder;Niko Münzenrieder;Christian Vogt;Hendrik Faber

  • Woven electronic fibers with sensing and display functions for smart textiles

    Kunigunde Cherenack;Christoph Zysset;Thomas Kinkeldei;Niko Münzenrieder

  • Wafer-scale design of lightweight and transparent electronics that wraps around hairs

    Giovanni A. Salvatore;Niko Münzenrieder;Thomas Kinkeldei;Luisa Petti

  • Fabrication and transfer of flexible few-layers MoS2 thin film transistors to any arbitrary substrate.

    Giovanni A. Salvatore;Niko Münzenrieder;Clément Barraud;Luisa Petti

  • Flexible Sensors—From Materials to Applications

    Júlio C. Costa;Filippo Spina;Pasindu Lugoda;Leonardo Garcia-Garcia

  • The Effects of Mechanical Bending and Illumination on the Performance of Flexible IGZO TFTs

    N Munzenrieder;K H Cherenack;G Troster

  • Flexible Self-Aligned Amorphous InGaZnO Thin-Film Transistors With Submicrometer Channel Length and a Transit Frequency of 135 MHz

    Niko Munzenrieder;Luisa Petti;Christoph Zysset;Thomas Kinkeldei

  • Biomimetic Microelectronics for Regenerative Neuronal Cuff Implants

    Daniil Karnaushenko;Niko Münzenrieder;Niko Münzenrieder;Dmitriy D. Karnaushenko;Britta Koch

  • Thin-film electronics on active substrates: review of materials, technologies and applications

    Unknown

  • Stretchable and Conformable Oxide Thin-Film Electronics

    Niko Münzenrieder;Niko Münzenrieder;Giuseppe Cantarella;Christian Vogt;Luisa Petti

  • IGZO TFT-Based All-Enhancement Operational Amplifier Bent to a Radius of 5 mm

    Christoph Zysset;Niko Munzenrieder;Luisa Petti;Lars Buthe

  • Flexible Self-Aligned Double-Gate IGZO TFT

    Niko Munzenrieder;Pascal Voser;Luisa Petti;Christoph Zysset

  • Encapsulation for Flexible Electronic Devices

    T. Kinkeldei;N. Munzenrieder;C. Zysset;K. Cherenack

  • Flexible a-IGZO TFT amplifier fabricated on a free standing polyimide foil operating at 1.2 MHz while bent to a radius of 5 mm

    N. Munzenrieder;L. Petti;C. Zysset;G. A. Salvatore

  • Integration Method for Electronics in Woven Textiles

    C. Zysset;T. W. Kinkeldei;N. Munzenrieder;K. Cherenack

  • Contact resistance and overlapping capacitance in flexible sub-micron long oxide thin-film transistors for above 100 MHz operation

    Niko Münzenrieder;Giovanni A. Salvatore;Luisa Petti;Christoph Zysset

  • Impact of Mechanical Bending on ZnO and IGZO Thin-Film Transistors

    Kunigunde H Cherenack;Niko S Munzenrieder;Gerhard Troster

  • Flexible Temperature Sensor Integration into E-Textiles Using Different Industrial Yarn Fabrication Processes.

    Pasindu Lugoda;Julio C. Costa;Carlos Oliveira;Leonardo Azael García-García

  • Flexible a-IGZO Phototransistor for Instantaneous and Cumulative UV-Exposure Monitoring for Skin Health

    Stefan Knobelspies;Alwin Daus;Giuseppe Cantarella;Luisa Petti

  • An electronic nose on flexible substrates integrated into a smart textile

    T. Kinkeldei;C. Zysset;N. Münzenrieder;G. Tröster

  • Design of Engineered Elastomeric Substrate for Stretchable Active Devices and Sensors

    Giuseppe Cantarella;Vincenzo Costanza;Alberto Ferrero;Raoul Hopf

  • Textile integrated sensors and actuators for near-infrared spectroscopy

    Christoph Zysset;Nassim Nasseri;Lars Büthe;Niko Münzenrieder

  • Flexible double gate a-IGZO TFT fabricated on free standing polyimide foil

    Niko Münzenrieder;Christoph Zysset;Luisa Petti;Thomas Kinkeldei

Frequent Co-Authors

Luisa Petti
Luisa Petti Free University of Bozen-Bolzano
Giovanni A. Salvatore
Giovanni A. Salvatore Ca Foscari University of Venice
Frank Ellinger
Frank Ellinger TU Dresden
Oliver G. Schmidt
Oliver G. Schmidt Chemnitz University of Technology
Thomas D. Anthopoulos
Thomas D. Anthopoulos University of Manchester
Paolo Lugli
Paolo Lugli Free University of Bozen-Bolzano
Denys Makarov
Denys Makarov Helmholtz-Zentrum Dresden-Rossendorf
Hendrik Faber
Hendrik Faber King Abdullah University of Science and Technology

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